Details of the Researcher

PHOTO

Shogo Tsuji
Section
Institute of Development, Aging and Cancer
Job title
Assistant Professor
Degree
e-Rad No.
60825595

Research History 5

  • 2024/06 - Present
    Tohoku University

  • 2024/06 - 2026/05
    国立研究開発法人国立長寿医療研究センター, ジェロサイエンス研究センター 統合生理学研究部 外来研究員

  • 2021/06 - 2024/06
    National Center for Geriatrics and Gerontrogy

  • 2018/04 - 2021/05
    National Center for Geriatrics and Gerontrogy

  • 2017/04 - 2018/03
    Kyoto University Institute for Chemical Research

Education 3

  • 京都大学大学院 薬学研究科 薬科学専攻

    2014/04 - 2017/03

  • 京都大学大学院 薬学研究科 薬科学専攻

    2012/04 - 2014/03

  • Kyoto University Faculty of Pharmaceutical Sciences

    2008/04 - 2012/03

Research Areas 3

  • Life sciences / Neuroscience - general /

  • Nanotechnology/Materials / Molecular biochemistry /

  • Life sciences / Molecular biology /

Awards 2

  1. 第44回日本基礎老化学会大会 若手奨励賞

    2021/06

  2. 第32回日本老年学会総会合同セッション 最優秀賞

    2021/06

Papers 10

  1. Sleep-wake patterns are altered with age, Prdm13 signaling in the DMH, and diet restriction in mice. International-journal

    Shogo Tsuji, Cynthia S Brace, Ruiqing Yao, Yoshitaka Tanie, Hirobumi Tada, Nicholas Rensing, Seiya Mizuno, Julio Almunia, Yingyi Kong, Kazuhiro Nakamura, Takahisa Furukawa, Noboru Ogiso, Shinya Toyokuni, Satoru Takahashi, Michael Wong, Shin-Ichiro Imai, Akiko Satoh

    Life science alliance 6 (6) 2023/06

    DOI: 10.26508/lsa.202301992  

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    Old animals display significant alterations in sleep-wake patterns such as increases in sleep fragmentation and sleep propensity. Here, we demonstrated that PR-domain containing protein 13 (Prdm13)+ neurons in the dorsomedial hypothalamus (DMH) are activated during sleep deprivation (SD) in young mice but not in old mice. Chemogenetic inhibition of Prdm13+ neurons in the DMH in young mice promotes increase in sleep attempts during SD, suggesting its involvement in sleep control. Furthermore, DMH-specific Prdm13-knockout (DMH-Prdm13-KO) mice recapitulated age-associated sleep alterations such as sleep fragmentation and increased sleep attempts during SD. These phenotypes were further exacerbated during aging, with increased adiposity and decreased physical activity, resulting in shortened lifespan. Dietary restriction (DR), a well-known anti-aging intervention in diverse organisms, ameliorated age-associated sleep fragmentation and increased sleep attempts during SD, whereas these effects of DR were abrogated in DMH-Prdm13-KO mice. Moreover, overexpression of Prdm13 in the DMH ameliorated increased sleep attempts during SD in old mice. Therefore, maintaining Prdm13 signaling in the DMH might play an important role to control sleep-wake patterns during aging.

  2. Evaluation of cellular activity in response to sleep deprivation by a comprehensive analysis of the whole mouse brain. International-journal

    Takuya Urushihata, Mio Goto, Keiko Kabetani, Mai Kiyozuka, Shiho Maruyama, Shogo Tsuji, Hirobumi Tada, Akiko Satoh

    Frontiers in neuroscience 17 1252689-1252689 2023

    DOI: 10.3389/fnins.2023.1252689  

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    Sleep deprivation (SD) causes several adverse functional outcomes, and understanding the associated processes can improve quality of life. Although the effects of SD on neuronal activity in several brain regions have been identified, a comprehensive evaluation of the whole brain is still lacking. Hence, we performed SD using two different methods, gentle handling and a dedicated chamber, in targeted recombination in active populations 2 (TRAP2) mice crossed with Rosa-ZsGreen reporter mice and visualized cellular activity in the whole brain. Using the semi-automated post-imaging analysis tool Slice Histology Alignment, Registration, and Cell Quantification (SHARCQ), the number of activated cells was quantified. From the analysis of 14 brain regions, cellular activity was significantly increased in the olfactory areas and decreased in the medulla by the two SD methods. From the analysis of the further subdivided 348 regions, cellular activity was significantly increased in the vascular organ of the lamina terminalis, lateral hypothalamic area, parabigeminal nucleus, ventral tegmental area, and magnocellular reticular nucleus, and decreased in the anterior part of the basolateral amygdalar nucleus, nucleus accumbens, septohippocampal nucleus, reticular nucleus of the thalamus, preoptic part of the periventricular hypothalamic nucleus, ventromedial preoptic nucleus, rostral linear nucleus raphe, facial motor nucleus, vestibular nuclei, and some fiber tracts (oculomotor nerve, genu of corpus callosum, and rubrospinal tract) by the two SD methods. Two subdivided regions of the striatum (caudoputamen and other striatum), epithalamus, vascular organ of the lamina terminalis, anteroventral preoptic nucleus, superior colliculus optic layer, medial terminal nucleus of the accessory optic tract, pontine gray, and fiber tracts (medial lemniscus, columns of the fornix, brachium of the inferior colliculus, and mammillary peduncle) were differentially affected by the two SD methods. Most brain regions detected from these analyses have been reported to be involved in regulating sleep/wake regulatory circuits. Moreover, the results from the connectivity analysis indicated that the connectivity of cellular activity among brain regions was altered by SD. Together, such a comprehensive analysis of the whole brain is useful for understanding the mechanisms by which SD and/or sleep disruption affects brain function.

  3. Stimulating Macropinocytosis for Intracellular Nucleic Acid and Protein Delivery: A Combined Strategy with Membrane-Lytic Peptides To Facilitate Endosomal Escape. International-journal Peer-reviewed

    Jan Vincent V Arafiles, Hisaaki Hirose, Misao Akishiba, Shogo Tsuji, Miki Imanishi, Shiroh Futaki

    Bioconjugate chemistry 31 (3) 547-553 2020/03/18

    DOI: 10.1021/acs.bioconjchem.0c00064  

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    Delivery of biomacromolecules via endocytic pathways requires the efficient accumulation of cargo molecules into endosomes, followed by their release to the cytosol. We propose a unique intracellular delivery strategy for bioactive molecules using a new potent macropinocytosis-inducing peptide derived from stromal-derived factor 1α (SN21). This peptide allowed extracellular materials to enter cells through the activation of macropinocytosis. To provide the ability to release internalized cargoes from endosomes, we conjugated SN21 with membrane-lytic peptides. The combination of a macropinocytosis-inducing peptide and a membrane-lytic peptide successfully delivered functional siRNA and proteins, which include antibodies, Cre recombinase, and an artificial transcription regulator protein having a transcription activator-like effector (TALE) motif. This study shows the feasibility of combining the physiological stimulation of macropinocytosis with the physicochemical disruption of endosomes as a strategy for intracellular delivery.

  4. Modified nucleobase-specific gene regulation using engineered transcription activator-like effectors. Peer-reviewed

    Tsuji S, Imanishi M

    Advanced drug delivery reviews 2019/09

    DOI: 10.1016/j.addr.2019.08.011  

    ISSN: 0169-409X

  5. Sequence-specific 5mC detection in live cells based on the TALE-split luciferase complementation system Peer-reviewed

    Shogo Tsuji, Kouki Shinoda, Shiroh Futaki, Miki Imanishi

    ANALYST 143 (16) 3793-3797 2018/08

    DOI: 10.1039/c8an00562a  

    ISSN: 0003-2654

    eISSN: 1364-5528

  6. Nested PUF Proteins: Extending Target RNA Elements for Gene Regulation Peer-reviewed

    Kouki Shinoda, Shogo Tsuji, Shiroh Futaki, Miki Imanishi

    ChemBioChem 19 (2) 171-176 2018/01/18

    Publisher: Wiley-VCH Verlag

    DOI: 10.1002/cbic.201700458  

    ISSN: 1439-7633 1439-4227

  7. Detection of N-6-methyladenosine based on the methyl-sensitivity of MazF RNA endonuclease Peer-reviewed

    Miki Imanishi, Shogo Tsuji, Akiyo Suda, Shiroh Futaki

    CHEMICAL COMMUNICATIONS 53 (96) 12930-12933 2017/12

    DOI: 10.1039/c7cc07699a  

    ISSN: 1359-7345

    eISSN: 1364-548X

  8. Sequence-specific recognition of methylated DNA by an engineered transcription activator-like effector protein Peer-reviewed

    Shogo Tsuji, Shiroh Futaki, Miki Imanishi

    CHEMICAL COMMUNICATIONS 52 (99) 14238-14241 2016

    DOI: 10.1039/c6cc06824c  

    ISSN: 1359-7345

    eISSN: 1364-548X

  9. Creating a TALE protein with unbiased 5 '-T binding Peer-reviewed

    Shogo Tsuji, Shiroh Futaki, Miki Imanishi

    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS 441 (1) 262-265 2013/11

    DOI: 10.1016/j.bbrc.2013.10.060  

    ISSN: 0006-291X

    eISSN: 1090-2104

  10. Zn(II) Binding and DNA Binding Properties of Ligand-Substituted CXHH-Type Zinc Finger Proteins Peer-reviewed

    Miki Imanishi, Kazushi Matsumura, Shogo Tsuji, Tomohiro Nakaya, Shigeru Negi, Shiroh Futaki, Yukio Sugiura

    BIOCHEMISTRY 51 (16) 3342-3348 2012/04

    DOI: 10.1021/bi300236m  

    ISSN: 0006-2960

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Misc. 2

  1. 5'-Tthymine recognition by TAL effectors. Peer-reviewed

    TSUJI, S, Imanishi, M, Futaki, S

    The 39th Inernational Symposium on Nucleic Acids Chemistry ,Toyoda Auditorium, Nagoya University 2012/11/16

  2. ジンクフィンガーの配位子置換による亜鉛濃度応答性人工転写因子の創製 Peer-reviewed

    今西未来, 辻将吾, 松村一史, 中屋智博, 杉浦幸雄, 二木史朗

    日本ケミカルバイオロジー学会 第7回年会 ,京都(京都大学百周年時計台記念館) 2012/06/07

Books and Other Publications 4

  1. Precision Medicine 2025年1月号 脳老化研究の最前線

    辻将吾, 佐藤亜希子

    北隆館 2025/01

  2. 実験医学 2023年9月号

    辻将吾 佐藤亜希子

    羊土社 2023/09

    ISBN: 9784758125710

  3. Geriatric Medicine

    2023/01

  4. 月刊「細胞」

    辻 将吾、佐藤 亜希子

    ニューサイエンス社 2020/09

Presentations 1

  1. 加齢に伴う睡眠変化をもたらす視床下部神経細胞の同定 Invited

    第48回日本基礎老化学会大会 2025/06/29

Research Projects 8

  1. 加齢性睡眠断片化の分子基盤:Prdm13転写ネットワークの統合解析

    辻 将吾

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業

    Category: 基盤研究(C)

    Institution: 東北大学

    2026/04/01 - 2029/03/31

  2. 神経細胞の脂質恒常性変化に基づく加齢に伴う高脂肪食感受性増大機構の解明

    辻 将吾

    Offer Organization: 公益財団法人 飯島藤十郎記念食品科学振興財団

    System: 2025 年度学術研究助成金

    2026/04 - 2027/03

  3. 脳内エピゲノム変化を介した睡眠断片化制御機序の解明

    辻 将吾

    Offer Organization: 公益財団法人 堀科学芸術振興財団|

    System: 2023年度 第32回 研究助成 医学系若手研究者プロジェクト

    2024/04 - 2026/03

  4. 脳内タンパク質のリン酸化に着目した、加齢で睡眠の質が低下する機序の解明

    辻 将吾

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 若手研究

    Category: 若手研究

    Institution: 国立研究開発法人国立長寿医療研究センター、東北大学加齢医学研究所

    2022/04 - 2026/03

  5. 睡眠の質を制御する脳内タンパク質の同定-加齢による睡眠の質低下の予防を目指して-

    辻 将吾

    Offer Organization: 花王健康科学研究会

    System: 2022年度 第20回花王健康科学研究会助成金

    Category: エネルギー代謝、循環機能、運動生理、睡眠などに関する研究

    2022/12 - 2023/11

  6. アストロサイトによるシナプス貪食に着目した睡眠不足が老化を誘導する機序の解明 Competitive

    辻 将吾

    Offer Organization: 国立長寿医療研究センター

    System: 長寿医療研究開発費

    2019/04 - 2021/03

  7. 視床下部PRDM13による睡眠・老化制御メカニズムの解明 Competitive

    辻 将吾

    Offer Organization: 公益財団法人サントリー生命科学財団

    System: 平成30年度スタートアップ資金

    2018/04 - 2019/03

  8. メチル化DNA選択的結合TALEタンパク質の創製とエピジェネティクス研究への展開

    辻 将吾

    Offer Organization: 日本学術振興会

    System: 科学研究費助成事業 特別研究員奨励費

    Category: 特別研究員奨励費

    Institution: 京都大学

    2015/04 - 2017/03

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    今年度は、昨年度得られた知見を元により5mC選択性の高い変異体TALEユニットを獲得するべく、4つのアミノ酸ランダム化部位のうちC末端側2つのアミノ酸をアラニンに固定したライブラリーを作製しスクリーニングを行った。その結果、複数の候補変異体が得られた。それらの塩基選択性をルシフェラーゼアッセイにより個別に評価したところ、5mC選択性が高いユニットが多く含まれていた。その中でも最も活性が高かったユニットを最終的な人工ユニットとして採用した。この人工ユニットを用いたTALEの結合活性を精製タンパク質を用いたゲルシフトアッセイによって評価した。その結果、人工ユニットを含むTALEは、C配列に比べて、5mC配列に対して2倍程度高い結合親和性を示すことがわかった。創製した人工ユニットが内在ゲノムDNAのメチル化を識別できるかを検討するため、人工ユニットを用いて細胞内ゲノムの5mC部位を標的としたTALEを作製した。このTALEに転写活性化ドメインを融合することで人工転写因子を作製し、標的内在遺伝子のメチル化状態依存的な活性化を試みた。その結果、TALE標的部位が非メチル化状態の細胞群に比べて、メチル化状態である細胞群において有意に転写を活性化したことから、人工ユニットが細胞内ゲノムを標的とした場合にも機能することがわかった。今後、人工ユニットを用いたTALEの5mC機能解析への応用が期待される。

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Teaching Experience 1

  1. 生命科学B 東北大学