研究者詳細

顔写真

キシダ コウヘイ
岸田 康平
Kouhei Kishida
所属
大学院生命科学研究科 分子化学生物学専攻 分子ネットワーク講座(微生物遺伝進化分野)
職名
助教
学位
  • 博士(生命科学) (東北大学)

プロフィール
遺伝子の水平伝播を研究対象にしています。

経歴 3

  • 2023年3月 ~ 継続中
    東北大学 大学院生命科学研究科 助教

  • 2019年4月 ~ 2023年1月
    テキサス大学 博士研究員

  • 2017年4月 ~ 2019年4月
    東北大学 生命科学研究科 学術研究員

学歴 3

  • 東北大学 生命科学研究科博士課程後期

    2014年4月 ~ 2017年3月

  • 東北大学 生命科学研究科博士課程前期

    2012年4月 ~ 2014年3月

  • 茨城大学 理学部

    2008年4月 ~ 2012年3月

所属学協会 3

  • 環境バイオテクノロジー学会

  • 日本ゲノム微生物学会

  • 日本農芸化学会

研究キーワード 8

  • 微生物分解

  • 分泌系

  • 接合伝達

  • プラスミド

  • IV型分泌

  • 遺伝子水平伝播

  • 細菌学

  • 農芸化学

研究分野 2

  • ライフサイエンス / 遺伝学 /

  • ライフサイエンス / 応用微生物学 /

受賞 2

  1. 生命科学研究会長賞

    2017年3月 東北大学

  2. 生命科学研究科長賞

    2017年3月 東北大学

論文 23

  1. Type I partition-related proteins enhance conjugative transfer through transcriptional activation andoriTregion binding 国際誌 査読有り

    Kouhei Kishida, Koji Kudo, Ren Kumagai, Wenhao Deng, Leonardo Stari, Natsumi Ogawa-Kishida, Yoshiyuki Ohtsubo, Yuji Nagata, Masataka Tsuda

    mBio e0160025 2025年7月31日

    出版者・発行元: Cold Spring Harbor Laboratory

    DOI: 10.1101/2025.01.22.634284  

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    ABSTRACT Plasmid partitioning and bacterial conjugation are critical processes ensuring plasmid maintenance and dissemination, respectively, within bacterial populations. Although traditionally regarded as distinct phenomena, these two processes are increasingly recognized as interconnected. While partitioning ensures plasmid inheritance during cell division, its potential influence on conjugative transfer remains poorly understood. A major impediment to understanding their interplay is that partition systems are often essential for plasmid stability, making it difficult to distinguish their direct effects on conjugation. In this study, we addressed this challenge using a mini-conjugative plasmid derived from thePseudomonas putidaNAH7 plasmid. This engineered plasmid, containing all conjugation-related genes, was cloned into anE. coli-compatible vector. Additionally, thepargenes from NAH7 were expressed from a separate plasmid to investigate their roles in conjugative transfer. Our results revealed that thepargene cluster plays a significant role in enhancing the conjugative transfer of the mini-conjugative plasmid. Specifically, ParB, a centromere-binding protein, functions as a transcriptional activator of conjugation-related genes with bindingparSNAHsite. In contrast, ParR, a KorA homolog, was not found to enhance transcription directly but binds extensively to theoriTregion. This binding probably facilitates the recruitment or stabilization of the relaxosome, thereby enhancing conjugation efficiency. Together, these findings unveil a previously unappreciated role for partition proteins in stimulating bacterial conjugation, providing new insights into how plasmids coordinate vertical and horizontal dissemination, highlighting that these processes can occur simultaneously within bacterial communities. IMPORTANCE Plasmid partition systems are classified into three types. While some systems have been reported to influence conjugative transfer, this study uncovers a novel mechanism utilized by a Type I system to enhance DNA transfer. Strikingly, repeat sequences perfectly matching theparSNAHsite—bound by ParB to activate downstream conjugative transfer genes—were identified on both plasmids and chromosomes across diverse proteobacterial taxa. Furthermore, many of these repeat sequences were localized near genes involved in conjugative transfer and partitioning, suggesting the presence of a conserved regulatory mechanism mediated by these repeats. This study provides important insights into how plasmid partition systems coordinate both vertical and horizontal dissemination. Such knowledge is essential for understanding and mitigating the spread of antibiotic resistance and other plasmid-encoded traits, and it offers a foundation for developing strategies to manage plasmid-associated genetic exchange.

  2. グラム陰性細菌における接合伝達の分子メカニズム 招待有り 査読有り

    岸田 康平, 熊谷 連, 井嶋 咲空, 大坪 嘉行, 永田 裕二

    環境バイオテクノロジー学会誌 2025年6月

    DOI: 10.50963/jenvbio.25.1_9  

  3. Carbon source acts as a deterministic filter shaping microbial succession and rare-abundant decoupling in soil bacterial communities. 国際誌

    Leonardo Stari, Hiromi Kato, Kouhei Kishida, Yoshiyuki Ohtsubo, Michio Kondoh, Yuji Nagata

    ISME communications 6 (1) ycag108 2026年1月

    DOI: 10.1093/ismeco/ycag108  

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    The principles governing microbial community assembly and the interplay between deterministic selection and stochasticity remain central debates in ecology. We investigated how chemically diverse carbon sources act as ecological filters, shaping soil bacterial communities. Using replicated microcosms amended with distinct substrates (glucose, succinate, naphthalene, phenanthrene, or γ-hexachlorocyclohexane (γ-HCH)) or under starvation, we tracked community trajectories via high-frequency 16S ribosomal RNA (rRNA) gene sequencing (29 timepoints, triplicate) and quantitative ecological modeling. Null model analysis confirmed the carbon source as the primary deterministic filter, enforcing high reproducibility (homogeneous selection governing ~74% of assembly among replicates) and overriding stochastic effects. Crucially, abundant (>1%) and rare (<0.1%) taxa exhibited decoupled assembly mechanisms. While abundant taxa were driven largely by dispersal limitation (~59%) and variable selection, the rare biosphere displayed a temporal regime shift. Unlike the immediate response of dominant taxa, rare taxa transitioned from stochastic isolation to strong deterministic selection (surging to ~50%) only during later successional stages. This reframes the rare biosphere as a "latent responder" reservoir recruited by metabolic byproducts rather than the primary substrate. Additionally, time-resolved interaction networks revealed that under severe stress from toxicity or starvation, interactions shifted from competitive exclusion to facilitation (e.g. necromass scavenging). These patterns provide strong empirical support for the Stress Gradient Hypothesis in a microbial context. Collectively, our findings demonstrate how deterministic filtering and stress-mediated cooperation jointly structure ecosystems, providing a high-resolution temporal dataset to further interrogate these fundamental ecological principles.

  4. Haloalkane dehalogenases other than LinB can contribute to the γ-hexachlorocyclohexane utilization. 国際誌 査読有り

    Nannan Chen, Kouhei Kishida, Leonardo Stari, Ryota Moriuchi, Yoshiyuki Ohtsubo, Jiri Damborsky, Yuji Nagata

    Bioscience, biotechnology, and biochemistry 2025年3月4日

    DOI: 10.1093/bbb/zbaf022  

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    Haloalkane dehalogenases (HLDs) convert halogenated compounds to corresponding alcohols by a simple hydrolytic mechanism. Although many bacterial strains possess HLDs or HLD homologues, LinB is the only HLD known to be involved in the utilization of γ-hexachlorocyclohexane (γ-HCH), a man-made chlorinated pesticide. In this study, to gain insight into the functional evolution of HLDs toward the γ-HCH utilization, the linB gene in γ-HCH-degrading Sphingobium japonicum strain UT26 was replaced by 7 other HLD or HLD homologous genes, including 3 putative ancestral enzymes. Interestingly, strains carrying genes for DmmA from marine metagenome or Rluc_anc, an ancestor of Renilla-luciferin 2-monooxygenase (Rluc) and LinB, produced 2,5-dichlorophenol and 2,5-dichlorohydroquinone from γ-HCH, which are indicators of LinB activity, and grew in minimal medium supplied with γ-HCH as a sole carbon source. These results indicated that other HLDs in addition to LinB can play roles in the γ-HCH utilization.

  5. Evolution of the Tn4371 ICE family: traR-mediated coordination of cargo gene upregulation and horizontal transfer. 国際誌 査読有り

    Satoshi Matsumoto, Kouhei Kishida, Shouta Nonoyama, Keiichiro Sakai, Masataka Tsuda, Yuji Nagata, Yoshiyuki Ohtsubo

    Microbiology spectrum 12 (10) e0060724 2024年9月12日

    DOI: 10.1128/spectrum.00607-24  

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    ICEKKS102Tn4677 carries a bph operon for the mineralization of polychlorinated biphenyls (PCBs)/biphenyl and belongs to the Tn4371 ICE (integrative and conjugative element) family. In this study, we investigated the role of the traR gene in ICE transfer. The traR gene encodes a LysR-type transcriptional regulator, which is conserved in sequence, positioning, and directional orientation among Tn4371 family ICEs. The traR belongs to the bph operon, and its overexpression on solid medium resulted in modest upregulation of traG (threefold), marked upregulation of xis (80-fold), enhanced ICE excision and, most notably, ICE transfer frequency. We propose the evolutional roles of traR, which upon insertion to its current position, might have connected the cargo gene activation and ICE transfer. This property of ICE, i.e., undergoing transfer under environmental conditions that lead to cargo gene activation, would instantly confer fitness advantages to bacteria newly acquiring this ICE, thereby resulting in efficient dissemination of the Tn4371 family ICEs.IMPORTANCEOnly ICEKKS102Tn4677 is proven to transfer among the widely disseminating Tn4371 family integrative and conjugative elements (ICEs) from β and γ-proteobacteria. We showed that the traR gene in ICEKKS102Tn4677, which is conserved in the ICE family with fixed location and direction, is co-transcribed with the cargo gene and activates ICE transfer. We propose that capturing of traR by an ancestral ICE to the current position established the Tn4371 family of ICEs. Our findings provide insights into the evolutionary processes that led to the widespread distribution of the Tn4371 family of ICEs across bacterial species.

  6. Transgenic Arabidopsis thaliana plants expressing bacterial γ-hexachlorocyclohexane dehydrochlorinase LinA 国際誌 査読有り

    Wenhao Deng, Yoshinobu Takada, Yoshihiko Nanasato, Kouhei Kishida, Leonardo Stari, Yoshiyuki Ohtsubo, Yutaka Tabei, Masao Watanabe, Yuji Nagata

    BMC Biotechnology 24 (1) 42-42 2024年6月19日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1186/s12896-024-00867-0  

    eISSN:1472-6750

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    Abstract Background γ-Hexachlorocyclohexane (γ-HCH), an organochlorine insecticide of anthropogenic origin, is a persistent organic pollutant (POP) that causes environmental pollution concerns worldwide. Although many γ-HCH-degrading bacterial strains are available, inoculating them directly into γ-HCH-contaminated soil is ineffective because of the low survival rate of the exogenous bacteria. Another strategy for the bioremediation of γ-HCH involves the use of transgenic plants expressing bacterial enzyme for γ-HCH degradation through phytoremediation. Results We generated transgenic Arabidopsis thaliana expressing γ-HCH dehydrochlroninase LinA from bacterium Sphingobium japonicum strain UT26. Among the transgenic Arabidopsis T2 lines, we obtained one line (A5) that expressed and accumulated LinA well. The A5-derived T3 plants showed higher tolerance to γ-HCH than the non-transformant control plants, indicating that γ-HCH is toxic for Arabidopsis thaliana and that this effect is relieved by LinA expression. The crude extract of the A5 plants showed γ-HCH degradation activity, and metabolites of γ-HCH produced by the LinA reaction were detected in the assay solution, indicating that the A5 plants accumulated the active LinA protein. In some A5 lines, the whole plant absorbed and degraded more than 99% of γ-HCH (10 ppm) in the liquid medium within 36 h. Conclusion The transgenic Arabidopsis expressing active LinA absorbed and degraded γ-HCH in the liquid medium, indicating the high potential of LinA-expressing transgenic plants for the phytoremediation of environmental γ-HCH. This study marks a crucial step toward the practical use of transgenic plants for the phytoremediation of POPs.

  7. Chimeric systems composed of swapped Tra subunits between distantly-related F plasmids reveal striking plasticity among type IV secretion machines. 国際誌 査読有り

    Kouhei Kishida, Yang Grace Li, Natsumi Ogawa-Kishida, Pratick Khara, Abu Amar M Al Mamun, Rachel E Bosserman, Peter J Christie

    PLoS genetics 20 (3) e1011088 2024年3月4日

    出版者・発行元: Cold Spring Harbor Laboratory

    DOI: 10.1371/journal.pgen.1011088  

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    Bacterial type IV secretion systems (T4SSs) are a versatile family of macromolecular translocators, collectively able to recruit diverse DNA and protein substrates and deliver them to a wide range of cell types. Presently, there is little understanding of how T4SSs recognize substrate repertoires and form productive contacts with specific target cells. Although T4SSs are composed of a number of conserved subunits and adopt certain conserved structural features, they also display considerable compositional and structural diversity. Here, we explored the structural bases underlying the functional versatility of T4SSs through systematic deletion and subunit swapping between two conjugation systems encoded by the distantly-related IncF plasmids, pED208 and F. We identified several regions of intrinsic flexibility among the encoded T4SSs, as evidenced by partial or complete functionality of chimeric machines. Swapping of VirD4-like TraD type IV coupling proteins (T4CPs) yielded functional chimeras, indicative of relaxed specificity at the substrate-TraD and TraD-T4SS interfaces. Through mutational analyses, we further delineated domains of the TraD T4CPs contributing to recruitment of cognate vs heterologous DNA substrates. Remarkably, swaps of components comprising the outer membrane core complexes, a few F-specific subunits, or the TraA pilins supported DNA transfer in the absence of detectable pilus production. Among sequenced enterobacterial species in the NCBI database, we identified many strains that harbor two or more F-like plasmids and many F plasmids lacking one or more T4SS components required for self-transfer. We confirmed that host cells carrying co-resident, non-selftransmissible variants of pED208 and F elaborate chimeric T4SSs, as evidenced by transmission of both plasmids. We propose that T4SS plasticity enables the facile assembly of functional chimeras, and this intrinsic flexibility at the structural level can account for functional diversification of this superfamily over evolutionary time and, on a more immediate time-scale, to proliferation of transfer-defective MGEs in nature.

  8. Three distinct metabolic phases of PCB/biphenyl degrader Acidovorax sp. KKS102 in nutrient broth. 国際誌 査読有り

    Keiichiro Sakai, Kouhei Kishida, Satoshi Matsumoto, Yuji Nagata, Masataka Tsuda, Yoshiyuki Ohtsubo

    Bioscience, biotechnology, and biochemistry 88 (3) 305-315 2024年1月8日

    DOI: 10.1093/bbb/zbad178  

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    Acidovorax sp. KKS102 is a beta-proteobacterium capable of degrading polychlorinated biphenyls (PCBs). In this study we examined its growth in liquid nutrient broth supplemented with different carbon sources. KKS102 had at least three distinct metabolic phases designated as metabolic phases 1 to 3, with phase 2 having two sub-phases. For example, succinate, fumarate, and glutamate, known to repress the PCB/biphenyl catabolic operon in KKS102, were utilized in phase 1, while acetate, arabinose, and glycerol in phase 2, and glucose and mannose in phase 3. We also showed that the BphQ response regulator mediating catabolite control in KKS102, whose expression level increased moderately through the growth, plays important roles in carbon metabolism in phases 2 and 3. Our study elucidates the hierarchical growth of KKS102 in nutrient-rich media. This insight is crucial for studies exploiting microbial biodegradation capabilities and advancing studies for catabolite regulation mechanisms.

  9. Degradation of DDT by γ-hexachlorocyclohexane dehydrochlorinase LinA. 国際誌 査読有り

    Kafayat Olaide Yusuf Habibullah, Ren Ito, Leonardo Stari, Kouhei Kishida, Yoshiyuki Ohtsubo, Eiji Masai, Masao Fukuda, Keisuke Miyauchi, Yuji Nagata

    Bioscience, biotechnology, and biochemistry 88 (1) 123-130 2023年12月19日

    DOI: 10.1093/bbb/zbad141  

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    1,1,1-Trichloro-2,2-bis(4-chlorophenyl)-ethane (DDT) is the first synthetic insecticide and one of the most widely used pesticides. The use of DDT has been banned, but it remains one of the most notorious environmental pollutants around the world. In this study, we found that γ-hexachlorocyclohexane (γ-HCH) dehydrochlorinase LinA from a γ-HCH-degrading bacterium, Sphingobium japonicum UT26, converts DDT to 1,1-dichloro-2,2-bis(4-chlorophenyl)-ethylene (DDE). Because of the weak DDT degradation activity of LinA, we could not detect such activity in UT26 cells expressing LinA constitutively. However, the linA-deletion mutant of UT26 harboring a plasmid for the expression of LinA, in which LinA was expressed at a higher level than UT26, showed the DDT degradation activity. This outcome highlights the potential for constructing DDT-degrading sphingomonad cells through elevated LinA expression.

  10. Ligand-DisplayingE. coliCells and Minicells for Programmable Delivery of Toxic Payloads via Type IV Secretion Systems 国際誌 査読有り

    Yang Grace Li, Kouhei Kishida, Natsumi Ogawa-Kishida, Peter J. Christie

    mBio 14 (5) e0214323 2023年8月12日

    出版者・発行元: Cold Spring Harbor Laboratory

    DOI: 10.1101/2023.08.11.553016  

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    ABSTRACT Bacterial type IV secretion systems (T4SSs) are highly versatile macromolecular translocators and offer great potential for deployment as delivery systems for therapeutic intervention. One major T4SS subfamily, the conjugation machines, are well-adapted for delivery of DNA cargoes of interest to other bacteria or eukaryotic cells, but generally exhibit modest transfer frequencies and lack specificity for target cells. Here, we tested the efficacy of a surface-displayed nanobody/antigen (Nb/Ag) pairing system to enhance the conjugative transfer of IncN (pKM101), IncF (F/pOX38), or IncP (RP4) plasmids, or of mobilizable plasmids including those encoding CRISPR/Cas9 systems (pCrispr), to targeted recipient cells.Escherichia colidonors displaying Nb’s transferred plasmids toE. coliandPseudomonas aeruginosarecipients displaying the cognate Ag’s at significantly higher frequencies than to recipients lacking Ag’s. Nb/Ag pairing functionally substituted for the surface adhesin activities of F-encoded TraN and pKM101-encoded Pep, although not conjugative pili or VirB5-like adhesins. Nb/Ag pairing further elevated the killing effects accompanying delivery of pCrispr plasmids toE. coliandP. aeruginosatransconjugants bearing CRISPR/Cas9 target sequences. Finally, we determined that anucleateE. coliminicells, which are clinically safer delivery vectors than intact cells, transferred self-transmissible and mobilizable plasmids toE. coliandP. aeruginosacells. Minicell-mediated mobilization of pCrispr plasmids toE. colirecipients elicited significant killing of transconjugants, although Nb/Ag pairing did not enhance conjugation frequencies or killing. Together, our findings establish the potential for deployment of bacteria or minicells as Programmed Delivery Systems (PDSs) for suppression of targeted bacterial species in infection settings. IMPORTANCE The rapid emergence of drug-resistant bacteria and current low rate of antibiotic discovery emphasize an urgent need for alternative antibacterial strategies. We engineeredEscherichia colito conjugatively transfer plasmids to specificE. coliandPseudomonas aeruginosarecipient cells through surface display of cognate nanobody/antigen (Nb/Ag) pairs. We further engineered mobilizable plasmids to carry CRISPR/Cas9 systems (pCrispr) for selective killing of recipient cells harboring CRISPR/Cas9 target sequences. In the assembled Programmed Delivery System (PDS), Nb-displayingE. colidonors with different conjugation systems and mobilizable pCrispr plasmids suppressed growth of Ag-displaying recipient cells to significantly greater extents than unpaired recipients. We also showed that anucleate minicells armed with conjugation machines and pCrispr plasmids were highly effective in killing ofE. colirecipients. Together, our findings suggest that bacteria or minicells armed with PDSs may prove highly effective as an adjunct or alternative to antibiotics for antimicrobial intervention.

  11. Contributions of F-specific subunits to the F plasmid-encoded type IV secretion system and F pilus. 国際誌 査読有り

    Kouhei Kishida, Rachel E Bosserman, Laith Harb, Pratick Khara, Liqiang Song, Bo Hu, Lanying Zeng, Peter J Christie

    Molecular microbiology 117 (5) 1275-1290 2022年4月17日

    DOI: 10.1111/mmi.14908  

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    F plasmids circulate widely among the Enterobacteriaceae through encoded type IV secretion systems (T4SSF s). Assembly of T4SSF s and associated F pili requires 10 VirB/VirD4-like Tra subunits and eight or more F-specific subunits. Recently, we presented evidence using in situ cryoelectron tomography (cryoET) that T4SSF s undergo structural transitions when activated for pilus production, and that assembled pili are deposited onto alternative basal platforms at the cell surface. Here, we deleted eight conserved F-specific genes from the MOBF12C plasmid pED208 and quantitated effects on plasmid transfer, pilus production by fluorescence microscopy, and elaboration of T4SSF structures by in situ cryoET. Mutant phenotypes supported the assignment of F-specific subunits into three functional Classes: (i) TraF, TraH, and TraW are required for all T4SSF -associated activities, (ii) TraU, TraN, and TrbC are nonessential but contribute significantly to distinct T4SSF functions, and (iii) TrbB is essential for F pilus production but not for plasmid transfer. Equivalent mutations in a phylogenetically distantly related MOB12A F plasmid conferred similar phenotypes and generally supported these Class assignments. We present a new structure-driven model in which F-specific subunits contribute to distinct steps of T4SSF assembly or activation to regulate DNA transfer and F pilus dynamics and deposition onto alternative platforms.

  12. IncFV plasmid pED208: Sequence analysis and evidence for translocation of maintenance/leading region proteins through diverse type IV secretion systems. 国際誌 査読有り

    Abu Amar M Al Mamun, Kimberly Kissoon, Kouhei Kishida, William C Shropshire, Blake Hanson, Peter J Christie

    Plasmid 123-124 102652-102652 2022年

    DOI: 10.1016/j.plasmid.2022.102652  

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    Two phylogenetically distantly-related IncF plasmids, F and pED208, serve as important models for mechanistic and structural studies of F-like type IV secretion systems (T4SSFs) and F pili. Here, we present the pED208 sequence and compare it to F and pUMNF18, the closest match to pED208 in the NCBI database. As expected, gene content of the three cargo regions varies extensively, although the maintenance/leading regions (MLRs) and transfer (Tra) regions also carry novel genes or motifs with predicted modulatory effects on plasmid stability, dissemination and host range. By use of a Cre recombinase assay for translocation (CRAfT), we recently reported that pED208-carrying donors translocate several products of the MLR (ParA, ParB1, ParB2, SSB, PsiB, PsiA) intercellularly through the T4SSF. Here, we extend these findings by reporting that pED208-carrying donors translocate 10 additional MLR proteins during conjugation. In contrast, two F plasmid-encoded toxin components of toxin-antitoxin (TA) modules, CcdB and SrnB, were not translocated at detectable levels through the T4SSF. Remarkably, most or all of the pED208-encoded MLR proteins and CcdB and SrnB were translocated through heterologous T4SSs encoded by IncN and IncP plasmids pKM101 and RP4, respectively. Together, our sequence analyses underscore the genomic diversity of the F plasmid superfamily, and our experimental data demonstrate the promiscuous nature of conjugation machines for protein translocation. Our findings raise intriguing questions about the nature of T4SS translocation signals and of the biological and evolutionary consequences of conjugative protein transfer.

  13. Protein Transfer through an F Plasmid-Encoded Type IV Secretion System Suppresses the Mating-Induced SOS Response. 国際誌 査読有り

    Abu Amar M Al Mamun, Kouhei Kishida, Peter J Christie

    mBio 12 (4) e0162921 2021年7月13日

    DOI: 10.1128/mBio.01629-21  

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    Bacterial type IV secretion systems (T4SSs) mediate the conjugative transfer of mobile genetic elements (MGEs) and their cargoes of antibiotic resistance and virulence genes. Here, we report that the pED208-encoded T4SS (TrapED208) translocates not only this F plasmid but several plasmid-encoded proteins, including ParA, ParB1, single-stranded DNA-binding protein SSB, ParB2, PsiB, and PsiA, to recipient cells. Conjugative protein translocation through the TrapED208 T4SS required engagement of the pED208 relaxosome with the TraD substrate receptor or coupling protein. T4SSs translocate MGEs as single-stranded DNA intermediates (T-strands), which triggers the SOS response in recipient cells. Transfer of pED208 deleted of psiB or ssb, which, respectively, encode the SOS inhibitor protein PsiB and single-stranded DNA-binding protein SSB, elicited a significantly stronger SOS response than pED208 or mutant plasmids deleted of psiA, parA, parB1, or parB2. Conversely, translocation of PsiB or SSB, but not PsiA, through the TrapED208 T4SS suppressed the mating-induced SOS response. Our findings expand the repertoire of known substrates of conjugation systems to include proteins with functions associated with plasmid maintenance. Furthermore, for this and other F-encoded Tra systems, docking of the DNA substrate with the TraD receptor appears to serve as a critical activating signal for protein translocation. Finally, the observed effects of PsiB and SSB on suppression of the mating-induced SOS response establishes a novel biological function for conjugative protein translocation and suggests the potential for interbacterial protein translocation to manifest in diverse outcomes influencing bacterial communication, physiology, and evolution. IMPORTANCE Many bacteria carry plasmids and other mobile genetic elements (MGEs) whose conjugative transfer through encoded type IV secretion systems (T4SSs), or "mating" channels, can lead to a rapid intra- and interspecies proliferation of genes encoding resistance to antibiotics or heavy metals or virulence traits. Here, we show that a model IncF plasmid-encoded T4SS translocates not only DNA but also several proteins intercellularly. The repertoire of translocated proteins includes the plasmidic SOS inhibitor protein PsiB, single-stranded DNA-binding protein SSB, and several partitioning proteins. We demonstrate that intercellular transmission of PsiB and SSB suppresses the SOS response, which is triggered in recipient cells upon acquisition of the single-stranded DNA transfer intermediate during mating. Our findings identify a new biological function for conjugative protein translocation in mitigating potentially deleterious consequences to plasmid and genome integrity resulting from SOS-induced recombination and mutation events.

  14. A transcriptional regulator, IscR, of Burkholderia multivorans acts as both repressor and activator for transcription of iron-sulfur cluster-biosynthetic isc operon. 国際誌 査読有り

    Shouta Nonoyama, Kouhei Kishida, Keiichiro Sakai, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Research in microbiology 171 (8) 319-330 2020年12月

    DOI: 10.1016/j.resmic.2020.06.005  

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    Bacterial iron-sulfur (Fe-S) clusters are essential cofactors for many metabolic pathways, and Fe-S cluster-containing proteins (Fe-S proteins) regulate the expression of various important genes. However, biosynthesis of such clusters has remained unknown in genus Burkholderia. Here, we clarified that Burkholderia multivorans ATCC 17616 relies on the ISC system for the biosynthesis of Fe-S clusters, and that the biosynthetic genes are organized as an isc operon, whose first gene encodes IscR, a transcriptional regulatory Fe-S protein. Transcription of the isc operon was repressed and activated under iron-rich and -limiting conditions, respectively, and Fur, an iron-responsive global transcriptional regulator, was indicated to indirectly regulate the expression of isc operon. Further analysis using a ΔiscR mutant in combination with a constitutive expression system of IscR and its derivatives indicated transcriptional repression and activation of isc operon by holo- and apo-forms of IscR, respectively, through their binding to the sequences within an isc promoter-containing (Pisc) fragment. Biochemical analysis using the Pisc fragment suggested that the apo-IscR binding sequence differs from the holo-IscR binding sequence. The results obtained in this study revealed a unique regulatory system for the expression of the ATCC 17616 isc operon that has not been observed in other genera.

  15. Conjugative Transfer of IncP-9 Catabolic Plasmids Requires a Previously Uncharacterized Gene, mpfK, Whose Homologs Are Conserved in Various MPFT-Type Plasmids. 国際誌 査読有り

    Kouhei Kishida, Shouta Nonoyama, Tim Lukas, Shotaro Kawahara, Koji Kudo, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Applied and environmental microbiology 85 (24) 2019年12月15日

    DOI: 10.1128/AEM.01850-19  

    ISSN:0099-2240

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    Conjugative transfer of bacterial plasmids to recipient cells is often mediated by type IV secretion machinery. Experimental investigations into the minimal gene sets required for efficient conjugative transfer suggest that such gene sets are variable, depending on plasmids. We have been analyzing the conjugative transfer of Pseudomonas-derived and IncP-9 plasmids, NAH7 and pWW0, whose conjugation systems belong to the MPFT type. Our deletion analysis and synthetic biology analysis in this study showed that these plasmids require previously uncharacterized genes, mpfK (formerly orf34) and its functional homolog, kikA, respectively, for their efficient conjugative transfer. MpfK was localized in periplasm and had four cysteine residues whose intramolecular or intermolecular disulfide bond formation was suggested to be important for efficient conjugative transfer. The mpfK homologs were specifically carried by many MPFT-type plasmids, including non-IncP-9 plasmids, such as R388 and R751. Intriguingly, the mpfK homologs from the two non-IncP-9 plasmids were not required for conjugation of their plasmids, but were able to complement efficiently the transfer defect of the NAH7 mpfK mutant. Our results suggested the importance of the mpfK homologs for conjugative transfer of MPFT-type plasmids.IMPORTANCE IncP-9 plasmids are important mobile genetic elements for the degradation of various aromatic hydrocarbons. Elucidation of conjugative transfer of such plasmids is expected to greatly contribute to our understanding of its role in the bioremediation of polluted environments. The present study mainly focused on the conjugation system of NAH7, a well-studied and naphthalene-catabolic IncP-9 plasmid. Our analysis showed that the NAH7 conjugation system uniquely requires, in addition to the conserved components of the type IV secretion system (T4SS), a previously uncharacterized periplasmic protein, MpfK, for successful conjugation. Our findings collectively revealed a unique type of T4SS-associated conjugation system in the IncP-9 plasmids.

  16. Suppression of substrate inhibition in phenanthrene-degrading Mycobacterium by co-cultivation with a non-degrading Burkholderia strain. 国際誌 査読有り

    Natsumi Ogawa, Hiromi Kato, Kouhei Kishida, Eikichi Ichihashi, Taichiro Ishige, Hirofumi Yoshikawa, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Microbiology (Reading, England) 165 (6) 625-637 2019年6月

    DOI: 10.1099/mic.0.000801  

    詳細を見る 詳細を閉じる

    In natural environments contaminated by recalcitrant organic pollutants, efficient biodegradation of such pollutants has been suggested to occur through the cooperation of different bacterial species. A phenanthrene-degrading bacterial consortium, MixEPa4, from polluted soil was previously shown to include a phenanthrene-degrading strain, Mycobacterium sp. EPa45, and a non-polycyclic aromatic hydrocarbon (PAH)-degrading strain, Burkholderia sp. Bcrs1W. In this study, we show that addition of phenanthrene to rich liquid medium resulted in the transient growth arrest of EPa45 during its degradation of phenanthrene. RNA-sequencing analysis of the growth-arrested cells showed the phenanthrene-dependent induction of genes that were predicted to be involved in the catabolism of this compound, and many other cell systems, such as a ferric iron-uptake, were up-regulated, implying iron deficiency of the cells. This negative effect of phenanthrene became much more apparent when using phenanthrene-containing minimal agar medium; colony formation of EPa45 on such agar was significantly inhibited in the presence of phenanthrene and its intermediate degradation products. However, growth inhibition was suppressed by the co-residence of viable Bcrs1W cells. Various Gram-negative bacterial strains, including the three other strains from MixEPa4, also exhibited varying degrees of suppression of the growth inhibition effect on EPa45, strongly suggesting that this effect is not strain-specific. Growth inhibition of EPa45 was also observed by other PAHs, biphenyl and naphthalene, and these two compounds and phenanthrene also inhibited the growth of another mycobacterial strain, M. vanbaalenii PYR-1, that can use them as carbon sources. These phenomena of growth inhibition were also suppressed by Bcrs1W. Our findings suggest that, in natural environments, various non-PAH-degrading bacterial strains play potentially important roles in the facilitation of PAH degradation by the co-residing mycobacteria.

  17. Establishment of plasmid vector and allelic exchange mutagenesis systems in a mycobacterial strain that is able to degrade polycyclic aromatic hydrocarbon. 国際誌 査読有り

    Kouhei Kishida, Natsumi Ogawa, Eikichi Ichihashi, Hiromi Kato, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Bioscience, biotechnology, and biochemistry 82 (7) 1169-1171 2018年7月

    DOI: 10.1080/09168451.2018.1445522  

    ISSN:0916-8451

    詳細を見る 詳細を閉じる

    Plasmid vector and allelic exchange mutagenesis systems were established for the genetic analysis of a phenanthrene-degrading mycobacterial strain, Mycobacterium sp. EPa45. Successful application of these systems revealed the necessity of the EPa45 phdI gene for the degradation of 1-hydroxy-2-naphthoate, which has been proposed to be an intermediate product in the degradation pathway of phenanthrene.

  18. Host Range of the Conjugative Transfer System of IncP-9 Naphthalene-Catabolic Plasmid NAH7 and Characterization of Its oriT Region and Relaxase 国際誌 査読有り

    Kouhei Kishida, Kei Inoue, Yoshiyuki Ohtsubo, Yuji Nagata, Masataka Tsuda

    APPLIED AND ENVIRONMENTAL MICROBIOLOGY 83 (1) 2017年1月

    DOI: 10.1128/AEM.02359-16  

    ISSN:0099-2240

    eISSN:1098-5336

  19. Comparison of the complete genome sequences of four γ-hexachlorocyclohexane-degrading bacterial strains: insights into the evolution of bacteria able to degrade a recalcitrant man-made pesticide. 国際誌 査読有り

    Tabata M, Ohhata S, Nikawadori Y, Kishida K, Sato T, Kawasumi T, Kato H, Ohtsubo Y, Tsuda M, Nagata Y

    DNA research : an international journal for rapid publication of reports on genes and genomes 23 (6) 581-599 2016年12月

    DOI: 10.1093/dnares/dsw041  

    ISSN:1340-2838

    eISSN:1756-1663

  20. Complete Genome Sequence of a γ-Hexachlorocyclohexane-Degrading Bacterium, Sphingobium sp. Strain MI1205. 国際誌 査読有り

    Tabata M, Ohhata S, Nikawadori Y, Sato T, Kishida K, Ohtsubo Y, Tsuda M, Nagata Y

    Genome announcements 4 (2) 2016年

    出版者・発行元:

    DOI: 10.1128/genomeA.00246-16  

    ISSN:2169-8287

  21. Complete Genome Sequence of a γ-Hexachlorocyclohexane Degrader, Sphingobium sp. Strain TKS, Isolated from a γ-Hexachlorocyclohexane-Degrading Microbial Community. 国際誌 査読有り

    Tabata M, Ohhata S, Kawasumi T, Nikawadori Y, Kishida K, Sato T, Ohtsubo Y, Tsuda M, Nagata Y

    Genome announcements 4 (2) 2016年

    出版者・発行元:

    DOI: 10.1128/genomeA.00247-16  

    ISSN:2169-8287

  22. Complete genome sequence of Pseudomonas aeruginosa MTB-1, isolated from a microbial community enriched by the technical formulation of hexachlorocyclohexane 国際誌 査読有り

    Yoshiyuki Ohtsubo, Takuya Sato, Kouhei Kishida, Michro Tabata, Yoshitoshi Ogura, Tetsuya Hayashi, Masataka Tsuda, Yuji Nagata

    Genome Announcements 2 (1) 2014年

    出版者・発行元: American Society for Microbiology

    DOI: 10.1128/genomeA.e01130-13  

    ISSN:2169-8287

  23. Complete Genome Sequence of Pseudomonas sp. Strain TKP, Isolated from a γ-Hexachlorocyclohexane-Degrading Mixed Culture. 国際誌 査読有り

    Ohtsubo Y, Kishida K, Sato T, Tabata M, Kawasumi T, Ogura Y, Hayashi T, Tsuda M, Nagata Y

    Genome announcements 2 (1) 2014年

    出版者・発行元:

    DOI: 10.1128/genomeA.e01241-13  

    ISSN:2169-8287

︎全件表示 ︎最初の5件までを表示

MISC 47

  1. 接合伝達における細胞膜リン脂質の役割

    熊谷連, 大坪嘉行, 永田裕二, 岸田康平

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  2. 細菌由来の有機塩素系殺虫剤γ-HCH分解酵素を発現する形質転換シロイヌナズナの作製と評価

    DENG Wenhao, 高田美信, 岸田康平, 大坪嘉行, 渡辺正夫, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  3. IV型分泌装置の構成因子TrbBはTraRによるICEKKS102Tn4677の切り出し活性化に関与する

    松本哲, 岸田康平, 永田裕二, 大坪嘉行

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  4. 移動性細菌Paenibacillus sp.NK-L2株が有機塩素系殺虫剤分解細菌株を運ぶヒッチハイク現象

    松添華子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  5. 従属栄養細菌の超低栄養環境での増殖を引き起こすAdhXの基質の検討

    伊藤蓮, STARI Leonardo, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  6. Cupriavidus属細菌株のコロニー周辺部が大きく広がる突然変異株の取得と解析

    平野翔子, XIONG Zhiyu, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  7. 様々な細菌集団および単離細菌株に対する有機塩素系殺虫剤分解酵素遺伝子のキャプチャリング実験

    岡俊璃, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  8. Sphingobium-Cupriavidus属細菌株による有機塩素系殺虫剤分解細菌コミュニティ形成

    XIONG Zhiyu, 平野翔子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  9. 有機塩素系殺虫剤分解細菌コミュニティの再構築

    手塚隆博, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024年

    ISSN: 2186-7976

  10. Cupriavidus sp.TKC株におけるThin Colony Expansion表現型の機構解明

    平野翔子, XIONG Zhiyu, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本微生物生態学会大会(Web) 37th 2024年

  11. 非移動性の環境汚染物質分解細菌株が移動性細菌株により運ばれるヒッチハイク現象

    松添華子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  12. γ-HCH分解性Sphingobium属株と非分解性Cupriavidus属株のコミュニティ形成

    ZHIYU Xiong, 平野翔子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  13. 起源未解明の有機塩素系殺虫剤分解酵素遺伝子を乗せたICEの発見

    岡俊璃, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  14. 環境汚染物質分解細菌に対するヘルパー効果の強化:新規な細胞間接着ツールの開発

    岸田なつみ, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  15. 単離細菌株を用いた有機塩素系殺虫剤分解細菌コミュニティの構成原理の解明

    手塚隆博, 加藤広海, 岸田康平, 大坪嘉行, 岸田なつみ, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  16. Cupriavidus sp.TKC株のThin Colony Expansion表現型に関与する推定Histidine Kinase遺伝子の同定

    平野翔子, ZHIYU Xiong, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024年

  17. 接合伝達を阻害するペプチド創薬のデザインとスクリーニング

    岸田康平, 熊谷連, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2023 (CD-ROM) 2023年

  18. 土壌細菌Burkholderia multivoransにおける転写制御因子IscRの解析

    野々山翔太, 岸田康平, 酒井啓一郎, 永田裕二, 津田雅孝, 大坪嘉行

    日本農芸化学会大会講演要旨集(Web) 2021 2021年

    ISSN: 2186-7976

  19. Burkholderia multivoransの鉄硫黄クラスター生合成遺伝子群における転写活性化機構の解析

    野々山翔太, 岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2020 2020年

    ISSN: 2186-7976

  20. Mycobacterium sp.EPa45株におけるフェナントレン分解遺伝子群の転写解析

    市橋永吉, 小川なつみ, 加藤広海, 岸田康平, 野々山翔太, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 13th 2019年

  21. プラスミドベクターpBBR1MCSの宿主域に関する研究

    岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 13th 2019年

  22. Burkholderia属細菌における鉄硫黄クラスター生合成系の転写制御機構の解析

    野々山翔太, 岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2019 2019年

    ISSN: 2186-7976

  23. PCB/ビフェニル分解資化遺伝子群を有すICEKKS1024677の水平伝播宿主域の解析

    川原昌太郎, 岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2019 2019年

    ISSN: 2186-7976

  24. プラスミドベクターpBBR1MCSの広宿主域性に関する研究

    岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2019 2019年

    ISSN: 2186-7976

  25. ナフタレン分解プラスミドNAH7のPartition systemが関与する接合伝達頻度上昇

    久土晃二, 岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 13th 2019年

  26. フェナントレン分解Mycobacterium株の遺伝子破壊系構築とビフェニル分解への転写応答

    市橋永吉, 小川なつみ, 岸田康平, 加藤広海, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 12th 2018年

  27. IncP-9群プラスミドNAH7の新規な接合伝達必須遺伝子の機能解明

    岸田康平, LUCAS Tim, 野々山翔太, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2018 2018年

    ISSN: 2186-7976

  28. ナフタレン分解遺伝子有すプラスミドNAH7の新規接合伝達必須遺伝子の同定

    岸田康平, 野々山翔太, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会東北支部大会プログラム・講演要旨集 153rd 2018年

  29. PCB/ビフェニル分解菌Acidovorax sp. KKS102株が有するICEの水平伝播域規定因子の同定

    川原昌太郎, 岸田康平, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 12th 2018年

  30. ナフタレン分解プラスミドNAH7の接合伝達に必須な遺伝子セットの同定

    岸田康平, LUCAS Tim, 野々山翔太, 永田裕二, 大坪嘉行, 津田雅孝

    日本ゲノム微生物学会年会要旨集 12th 2018年

  31. 難分解性芳香族化合物分解コンソーシアム由来の分解細菌Mycobacteirum sp.EPa45株における生育阻害機構

    小川なつみ, 加藤広海, 岸田康平, 市橋永吉, 永田裕二, 大坪嘉行, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2018 2018年

    ISSN: 2186-7976

  32. 接合伝達の鍵酵素relaxaseの金属イオンコファクターの違いによるnick導入塩基配列特異性の変化

    岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 11th 2017年

  33. IncP-9群プラスミドの接合伝達に関わる全遺伝子の同定

    岸田康平, LUKAS Tim, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2017 2017年

    ISSN: 2186-7976

  34. Burkholderia multivoransの鉄硫黄クラスター生合成遺伝子群に対する転写因子Fur及びIscRの作用機序

    野々山翔太, 佐藤拓哉, 岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 11th 2017年

  35. IncP-9群プラスミドNAH7の新規接合伝達必須遺伝子の機能解析

    岸田康平, LUCAS Tim, 大坪嘉行, 永田裕二, 津田雅孝

    日本微生物生態学会大会(Web) 2017 2017年

  36. 土壌細菌Burkholderia multivoransにおける鉄硫黄クラスター生合成系の転写制御機構の解析

    野々山翔太, 佐藤拓哉, 岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2017 2017年

    ISSN: 2186-7976

  37. ナフタレン分解プラスミドNAH7の接合伝達関連機能未知遺伝子群traDEFの解析

    岸田康平, 井上慧, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 10th 2016年

  38. Burkholderia multivoransにおける鉄硫黄クラスター合成遺伝子群の転写制御に対するFur及びIscRの作用機作

    野々山翔太, 佐藤拓哉, 岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 10th 2016年

  39. ナフタレン分解プラスミドNAH7の接合伝達関連遺伝子traDEFの解析

    岸田康平, 井上慧, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2016 2016年

    ISSN: 2186-7976

  40. Burkholderia multivoransにおける鉄硫黄クラスター合成系遺伝子群の転写制御機構の解析

    野々山翔太, 佐藤拓哉, 岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2016 2016年

    ISSN: 2186-7976

  41. ナフタレン分解プラスミドNAH7の接合伝達関連遺伝子の解析

    岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    環境バイオテクノロジー学会大会プログラム講演要旨集 2016 2016年

  42. ナフタレン分解プラスミドNAH7の接合伝達宿主域に関する研究

    岸田康平, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2015 2015年

    ISSN: 2186-7976

  43. ナフタレン分解プラスミドNAH7のoriTの同定と宿主域の解析

    岸田康平, 井上慧, 宮崎亮, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 8th 2014年

  44. IncP-9群NAH7のoriTの同定と接合伝達宿主域に関する研究

    岸田康平, 井上慧, 宮崎亮, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2014 2014年

    ISSN: 2186-7976

  45. IncP-9群プラスミドNAH7の接合伝達開始配列の解析

    岸田康平, 井上慧, 宮崎亮, 大坪嘉行, 永田裕二, 津田雅孝

    日本ゲノム微生物学会年会要旨集 7th 2013年

  46. IncP-9群NAH7接合伝達系のoriTを中心とした解析

    岸田康平, 井上慧, 宮崎亮, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会大会講演要旨集(Web) 2013 2013年

    ISSN: 2186-7976

  47. IncP-9群プラスミドNAH7のoriTの同定及び接合伝達関連遺伝子traFの解析

    岸田康平, 井上慧, 宮崎亮, 大坪嘉行, 永田裕二, 津田雅孝

    環境バイオテクノロジー学会大会プログラム講演要旨集 2013 2013年

︎全件表示 ︎最初の5件までを表示

講演・口頭発表等 42

  1. 細菌間DNA輸送を担う接合伝達装置の分子機構の解明 招待有り

    岸田 康平, 熊谷 連, 井嶋 咲空, 齋藤 律水, 小柴 生造, 大坪 嘉行, 永田 裕二

    顕微鏡学会 2026年5月25日

  2. 細菌細胞間DNA輸送分子マシンの研究 招待有り

    分子ロボティクス研究会 2026年3月13日

  3. 接合伝達機構のin vitro 再構築を目指して 招待有り

    岸田 康平

    国立遺伝学研究所研究会 第3回プラスミド研究会「プラスミドの網羅的データベース構築に向けて」 2025年8月25日

  4. IV型分泌装置の立体構造から解き明かされる新たな接合伝達メカニズム 招待有り

    2024年度細菌学会 2024年8月7日

  5. Fプラスミドの接合伝達におけるリン脂質の役割の解明 招待有り

    岸田康平

    2023年度国立遺伝学研究所研究会 「微生物の細胞複製システムから紐解く生命のデザイン」 2024年3月28日

  6. 接合伝達機構を介した核酸輸送による微生物制御に関する研究 招待有り

    岸田 康平

    日本農芸化学会 2024年3月24日

  7. 遺伝子の水平伝播を担う接合伝達機構のメカニズムとその生態学的役割 招待有り

    岸田康平

    微生物生態学会 2023年11月28日

  8. 異種プラスミド同士が構築するキメラ型接合伝達装置 招待有り

    岸田康平

    遺伝研研究会「プラスミドの網羅的データベースの再整備に向けて」 2023年9月14日

  9. プラスミドの接合伝達の分子機構 接合伝達必須因子と性線毛構築関連因子の発見 招待有り

    岸田康平

    大隅財団 微生物コンソーシアム定例会 2023年4月29日

  10. IncP-9 Catabolic Plasmids from Pseudomonas. 国際会議 招待有り

    津田 雅孝, 岸田 康平

    Plasmid biology 2018 2018年8月

  11. IV型分泌装置の構成因子TrbBはTraRによるICEKKS102Tn4677の切り出し活性化に関与する

    松本 哲、岸田 康平、永田 裕二、大坪 嘉行

    日本農芸化学会2024年度 2024年3月25日

  12. 有機塩素系殺虫剤分解細菌コミュニティの再構築

    手塚 隆博、岸田 なつみ、加藤 広海、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  13. Cupriavidus属細菌株のコロニー周辺部が大きく広がる突然変異株の取得と解析

    平野 翔子、Xiong Zhiyu、加藤 広海、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  14. Sphingobium-Cupriavidus属細菌株による有機塩素系殺虫剤分解細菌コミュニティ形成

    XIONG ZHIYU、平野 翔子、岸田 なつみ、加藤 広海、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  15. 従属栄養細菌の超低栄養環境での増殖を引き起こすAdhXの基質の検討

    伊藤 蓮、Stari Leonardo、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  16. 様々な細菌集団および単離細菌株に対する有機塩素系殺虫剤分解酵素遺伝子のキャプチャリング実験

    岡 俊璃、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  17. 接合伝達における細胞膜リン脂質の役割

    熊谷 連、大坪 嘉行、永田 裕二、岸田 康平

    日本農芸化学会2024年度 2024年3月24日

  18. 細菌由来の有機塩素系殺虫剤γ-HCH分解酵素を発現する形質転換シロイヌナズナの作製と評価

    鄧 文昊、高田 美信、岸田 康平、大坪 嘉行、渡辺 正夫、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  19. 移動性細菌Paenibacillus sp. NK-L2株が有機塩素系殺虫剤分解細菌株を運ぶヒッチハイク現象

    松添 華子、岸田 なつみ、加藤 広海、岸田 康平、大坪 嘉行、永田 裕二

    日本農芸化学会2024年度 2024年3月24日

  20. IV型分泌装置(T4SS)の内膜コンポーネントTrbBのICEKKS102Tn4655環状化への関与

    松本 哲、岸田 康平、永田 裕二大坪 嘉行

    第18回ゲノム微生物学会 2024年3月12日

  21. Cupriavidus sp. TCK株のDCG現象に関わる遺伝子の探索

    平野 翔子、Stari Leonardo、Xiong Zhiyu、加藤 広海、 岸田 康平、大坪 嘉行、永田 裕二

    第18回ゲノム微生物学会 2024年3月12日

  22. F プラスミドの性線毛の構築機構の解明

    岸田 康平

    21世紀大腸菌研究会 2023年6月23日

  23. 接合伝達を阻害するペプチド創薬のデザインとスクリーニング

    岸田康平、熊谷 連、大坪 嘉行、永田 裕二

    環境バイオテクノロジー学会2023年度大会 2023年6月8日

  24. IscR of Burkholderia multivorans plays both repressing and activating roles in transcription of isc operon for Fe-S cluster biosynthesis.

    Nonoyama S, Kishida K, Ohtsubo Y, Nagata, Tsuda M

    2019年7月

  25. プラスミドNAH7上の接合伝達における受容菌選択性決定因子の探索

    作田 郁子, 水口 千穂, 岸田 康平, 津田 雅孝, 岡田 憲典, 野尻 秀昭

    日本農芸化学会2019年度大会 2019年3月

  26. PCB/ビフェニル分解資化遺伝子群を有すICEKKS102の水平伝播宿主域の解析

    川原 昌太郎, 岸田 康平, 永田 裕二, 大坪 嘉行, 津田 雅孝

    日本農芸化学会2019年度大会 2019年3月

  27. Burkholderia属細菌における鉄硫黄クラスター生合成系の転写制御機構の解析

    野々山 翔太, 岸田 康平, 永田 裕二, 大坪 嘉行, 津田 雅孝

    日本農芸化学会2019年度大会 2019年3月

  28. Mycobacterium sp. EPa45株におけるフェナントレン分解遺伝子群の転写解析

    市橋 永吉, 小川 なつみ, 加藤 広海, 岸田 康平, 野々山 翔太, 永田 裕二, 大坪 嘉行, 津田 雅孝

    第13回日本ゲノム微生物学会年会 2019年3月

  29. ナフタレン分解プラスミド NAH7のPartition systemが関与する接合伝達頻度上昇

    久土 晃二, 岸田 康平, 永田 裕二, 大坪 嘉行, 津田 雅孝

    第13回日本ゲノム微生物学会年会 2019年3月

  30. プラスミドベクターpBBR1MCSの広宿主域性に関する研究

    岸田 康平, 永田 裕二, 大坪 嘉行, 津田 雅孝

    日本農芸化学会2019年度大会 2019年3月

  31. Identification and Characterization of A Novel Gene Essential for Conjugative Transfer of Naphthalene-Catabolic Plasmid NAH7. 国際会議

    岸田 康平, 野々山 翔太, 大坪 嘉行, 永田 裕二, 津田 雅孝

    Plasmid biology 2018 2018年8月

  32. 難分解性芳香族化合物分解コンソーシアム由来の分解細菌Mycobacterium sp. Epa45株における生育阻害機構

    小川 なつみ, 加藤 広海, 岸田 康平, 市橋 永吉, 永田 裕二, 大坪 嘉行, 津田 雅孝

    日本農芸化学会2018年度大会 2018年3月

  33. IncP-9群プラスミドNAH7の新規な接合伝達必須遺伝子の機能解明

    岸田 康平, Tim Lucas, 野々山 翔太, 永田 裕二, 大坪 嘉行, 津田 雅孝

    日本農芸化学会2018年度大会 2018年3月

  34. IncP-9群プラスミドNAH7の新規接合伝達必須遺伝子の機能解析

    岸田 康平, Tim Lucas, 大坪 嘉行, 永田 裕二, 津田 雅孝

    環境微生物系合同大会2017 2017年8月

  35. Burkholderia multivoransにおける鉄硫黄クラスター生合成遺伝子群に対するFur及びIscRの作用機序

    野々山 翔太, 佐藤 拓哉, 岸田 康平, 大坪 嘉行, 永田 裕二, 津田 雅孝

    第11回日本ゲノム微生物学会年会 2017年3月

  36. IncP-9群プラスミドの接合伝達に関わる全遺伝子の同定

    岸田 康平, Tim Lucas, 大坪 嘉行, 永田 裕二, 津田 雅孝

    日本農芸化学会2017年度大会 2017年3月

  37. ナフタレン分解プラスミドNAH7の接合伝達関連遺伝子の解析

    岸田 康平, 大坪 嘉行, 永田 裕二, 津田 雅孝

    環境バイオテクノロジー学会2016年度大会 2016年6月

  38. ナフタレン分解プラスミドNAH7の接合伝達関連遺伝子traDEFの解析

    岸田 康平, 井上 慧, 大坪 嘉行, 永田 裕二, 津田 雅孝

    日本農芸化学会2016年度大会 2016年3月

  39. ナフタレン分解プラスミドNAH7の接合伝達宿主域に関する研究

    岸田 康平, 大坪 嘉行, 永田 裕二, 津田 雅孝

    日本農芸化学会2015年度大会 2015年3月

  40. Host range of conjugation system encoded by naphthalene-catabolic plasmid NAH7 from Pseudomonas putida. 国際会議

    岸田 康平, 大坪 嘉行, 永田 裕二, 津田 雅孝

    Plasmid biology 2014. 2014年8月

  41. IncP-9群プラスミドNAH7の接合伝達系のoriTを中心とした解析

    岸田 康平, 井上 慧, 宮崎 亮, 大坪 嘉行, 永田 裕二, 津田 雅孝

    日本農芸化学会2013年度大会 2013年3月

  42. IncP-9群 NAH7のoriTの同定と接合伝達宿主域に関する研究

    岸田 康平, 井上 慧, 宮崎 亮, 大坪 嘉行, 永田 裕二, 津田 雅孝

    日本農芸化学会2014年度大会

︎全件表示 ︎最初の5件までを表示

共同研究・競争的資金等の研究課題 5

  1. 染色体を必要としないプラスミドの接合伝達システムの構築とその応用

    岸田 康平

    2025年2月 ~ 2029年3月

  2. プラスミドの接合伝達による細胞間DNA輸送メカニズムの解明

    2025年4月 ~ 2027年3月

  3. 細菌の遺伝子獲得能を利用した未開拓遺伝子資源の効率的利用法の開発

    永田 裕二, 大坪 嘉行, 岸田 康平

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Challenging Research (Exploratory)

    研究機関:Tohoku University

    2024年6月 ~ 2026年3月

  4. CRISPR-associated-transposon を用いた新規な 細菌分離法の確立

    2024年4月 ~ 2026年3月

  5. プラスミドの接合伝達装置の祖先型構築と接合伝達阻害・促進化合物の同定

    岸田 康平

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research Grant-in-Aid for Early-Career Scientists

    研究種目:Grant-in-Aid for Early-Career Scientists

    研究機関:Tohoku University

    2023年3月 ~ 2025年3月