Profile
Research area
分子生物学
分子遺伝学
生化学Graduating school
京都大学理学部(2000年)Final Education
東京大学大学院新領域創成科学研究科(2005年)Previous workplace
理化学研究所(2005年4月~2008年3月)
カロリンスカ研究所(2008年4月~2013年2月)
奈良先端科学技術大学院大学(2013年3月~2016年3月)
新潟大学大学院医歯学総合研究科(2016年4月~2026年7月)Study abroad experience
カロリンスカ研究所(スウェーデン)(2008年4月~2013年8月)Main academic activities
日本分子生物学会
酵母遺伝学フォーラムMain research topic
細胞の栄養応答に関する研究
オートファジーによる細胞成分の分解に関する研究
オルガネラ動態制御に関する研究Self-introduction
地球上生物に広く見られる現象の仕組みを探求し、生体分子の働きから説明することを目指しています。また、生物種間で仕組みの共通性と多様性を理解し、生命の本質に迫ることで、医学の発展や疾患の理解に貢献したいと考えています。さらに、生命現象を深く理解し、科学的思考力を備えた医療・研究人材の育成に取り組みたいと考えています。
Research Keyword
Award
- Nov. 2023
酵母コンソーシアムフェロー, 大隅基礎科学創成財団
福田智行 - Sep. 2019
会長賞, 酵母遺伝学フォーラム - Nov. 2013
キャッチコピー「無限の可能性、ここが最先端」採用, 奈良先端科学技術大学院大学 - Oct. 2009
Poster Winner, Solbacka 2009 (14th Karolinska Institutet CMB/Ludwig Conference) - Apr. 2009
日本学術振興会海外特別研究員 - Apr. 2008
海外留学助成ポストドクトラルフェローシップ, 上原記念生命科学財団 - Mar. 2005
博士論文特別賞, 東京大学大学院新領域創成科学研究科先端生命科学専攻 - Apr. 2002
日本学術振興会特別研究員(DC1) - Mar. 2002
IB賞(最優秀修士論文), 東京大学大学院新領域創成科学研究科先端生命科学専攻
Paper
- Mitochondrial fission during mitophagy requires both inner and outer mitofissins
Kentaro Furukawa; Tatsuro Maruyama; Shun-ichi Yamashita; Keiichi Inoue; Tomoyuki Fukuda; Nobuo N. Noda; Tomotake Kanki
EMBO reports, Apr. 2025
27(4), 853-872, 10.1101/2025.04.13.648642 - Comprehensive analysis of non-selective and selective autophagy in yeast atg mutants and characterization of autophagic activity in the absence of the Atg8 conjugation system.
Tamara Ginevskaia; Aleksei Innokentev; Kentaro Furukawa; Tomoyuki Fukuda; Manabu Hayatsu; Shun-Ichi Yamashita; Keiichi Inoue; Shinsuke Shibata; Tomotake Kanki
Journal of biochemistry, Sep. 2024
176(3), 217-227, 10.1093/jb/mvae042 - Fission yeast Pib2 localizes to vacuolar membranes and regulates TOR complex 1 through evolutionarily conserved domains.
Yuichi Morozumi; Yumi Hayashi; Cuong Minh Chu; Fajar Sofyantoro; Yutaka Akikusa; Tomoyuki Fukuda; Kazuhiro Shiozaki
FEBS letters, Jul. 2024
598(23), 2886-2896, 10.1002/1873-3468.14980 - Atg44/Mdi1/mitofissin facilitates Dnm1-mediated mitochondrial fission
Kentaro Furukawa; Manabu Hayatsu; Kentaro Okuyama; Tomoyuki Fukuda; Shun-Ichi Yamashita; Keiichi Inoue; Shinsuke Shibata; Tomotake Kanki
Autophagy, May 2024
20(10), 2314-2322, 10.1080/15548627.2024.2360345 - Mitophagy mediated by BNIP3 and NIX protects against ferroptosis by downregulating mitochondrial reactive oxygen species.
Shun-Ichi Yamashita; Yuki Sugiura; Yuta Matsuoka; Rae Maeda; Keiichi Inoue; Kentaro Furukawa; Tomoyuki Fukuda; David C Chan; Tomotake Kanki
Cell death and differentiation, May 2024
31(5), 651-661, 10.1038/s41418-024-01280-y - Mitofissin: a novel mitochondrial fission protein that facilitates mitophagy.
Tomoyuki Fukuda; Kentaro Furukawa; Tatsuro Maruyama; Nobuo N Noda; Tomotake Kanki
Autophagy, Nov. 2023
19(11), 3019-3021, 10.1080/15548627.2023.2237343 - Hva22, a REEP family protein in fission yeast, promotes reticulophagy in collaboration with a receptor protein.
Tomoyuki Fukuda; Tetsu Saigusa; Kentaro Furukawa; Keiichi Inoue; Shun-Ichi Yamashita; Tomotake Kanki
Autophagy, Oct. 2023, Reviewed, No invitation
19(10), 2657-2667, 10.1080/15548627.2023.2214029 - Meet the authors: Tomoyuki Fukuda, Kentaro Furukawa, and Tomotake Kanki
Sonhita Chakraborty; Tomoyuki Fukuda; Kentaro Furukawa; Tomotake Kanki
Molecular Cell, Jun. 2023
83(12), 1953-1955, 10.1016/j.molcel.2023.05.016 - The mitochondrial intermembrane space protein mitofissin drives mitochondrial fission required for mitophagy
Tomoyuki Fukuda; Kentaro Furukawa; Tatsuro Maruyama; Shun-ichi Yamashita; Daisuke Noshiro; Chihong Song; Yuta Ogasawara; Kentaro Okuyama; Jahangir Md Alam; Manabu Hayatsu; Tetsu Saigusa; Keiichi Inoue; Kazuho Ikeda; Akira Takai; Lin Chen; Vikramjit Lahiri; Yasushi Okada; Shinsuke Shibata; Kazuyoshi Murata; Daniel J. Klionsky; Nobuo N. Noda; Tomotake Kanki
Molecular Cell, May 2023
83(12), 2045-2058.e9, 10.1016/j.molcel.2023.04.022 - Axonal mRNA binding of hnRNP A/B is crucial for axon targeting and maturation of olfactory sensory neurons
Nanaho Fukuda; Tomoyuki Fukuda; Piergiorgio Percipalle; Kanako Oda; Nobuyuki Takei; Kevin Czaplinski; Kazushige Touhara; Yoshihiro Yoshihara; Toshikuni Sasaoka
Cell Reports, May 2023
42(5), 112398-112398, 10.1016/j.celrep.2023.112398 - Fission Yeast TORC1 Promotes Cell Proliferation through Sfp1, a Transcription Factor Involved in Ribosome Biogenesis.
Yen Teng Tai; Tomoyuki Fukuda; Yuichi Morozumi; Hayato Hirai; Arisa H Oda; Yoshiaki Kamada; Yutaka Akikusa; Tomotake Kanki; Kunihiro Ohta; Kazuhiro Shiozaki
Molecular and cellular biology, Dec. 2023
43(12), 675-692, 10.1080/10985549.2023.2282349 - Membrane perturbation by lipidated Atg8 underlies autophagosome biogenesis.
Tatsuro Maruyama; Jahangir Md Alam; Tomoyuki Fukuda; Shun Kageyama; Hiromi Kirisako; Yuki Ishii; Ichio Shimada; Yoshinori Ohsumi; Masaaki Komatsu; Tomotake Kanki; Hitoshi Nakatogawa; Nobuo N Noda
Nature structural & molecular biology, Jul. 2021
28(7), 583-593, 10.1038/s41594-021-00614-5 - Multiplexed suppression of TOR complex 1 induces autophagy during starvation.
Tomoyuki Fukuda; Kazuhiro Shiozaki
Autophagy, Jun. 2021
1-2, 10.1080/15548627.2021.1938915 - Mitophagy reporter mouse analysis reveals increased mitophagy activity in disuse-induced muscle atrophy.
Shun-Ichi Yamashita; Masanao Kyuuma; Keiichi Inoue; Yuki Hata; Ryu Kawada; Masaki Yamabi; Yasuyuki Fujii; Junko Sakagami; Tomoyuki Fukuda; Kentaro Furukawa; Satoshi Tsukamoto; Tomotake Kanki
Journal of cellular physiology, May 2021
10.1002/jcp.30404 - Atg43, a novel autophagy-related protein, serves as a mitophagy receptor to bridge mitochondria with phagophores in fission yeast.
Tomoyuki Fukuda; Tomotake Kanki
Autophagy, Mar. 2021
17(3), 826-827, 10.1080/15548627.2021.1874662 - Tripartite suppression of fission yeast TORC1 signaling by the GATOR1-Sea3 complex, the TSC complex, and Gcn2 kinase.
Tomoyuki Fukuda; Fajar Sofyantoro; Yen Teng Tai; Kim Hou Chia; Takato Matsuda; Takaaki Murase; Yuichi Morozumi; Hisashi Tatebe; Tomotake Kanki; Kazuhiro Shiozaki
eLife, Feb. 2021
10, 10.7554/eLife.60969 - Association and dissociation between the mitochondrial Far complex and Atg32 regulate mitophagy.
Aleksei Innokentev; Kentaro Furukawa; Tomoyuki Fukuda; Tetsu Saigusa; Keiichi Inoue; Shun-Ichi Yamashita; Tomotake Kanki
eLife, Dec. 2020
9, 10.7554/eLife.63694 - Atg43 tethers isolation membranes to mitochondria to promote starvation-induced mitophagy in fission yeast.
Tomoyuki Fukuda; Yuki Ebi; Tetsu Saigusa; Kentaro Furukawa; Shun-Ichi Yamashita; Keiichi Inoue; Daiki Kobayashi; Yutaka Yoshida; Tomotake Kanki
eLife, Nov. 2020, Reviewed
9, 10.7554/eLife.61245 - Gemcitabine induces Parkin-independent mitophagy through mitochondrial-resident E3 ligase MUL1-mediated stabilization of PINK1.
Ryoko Igarashi; Shun-Ichi Yamashita; Tomohiro Yamashita; Keiichi Inoue; Tomoyuki Fukuda; Takeo Fukuchi; Tomotake Kanki
Scientific reports, Jan. 2020, Reviewed, No invitation
10(1), 1465-1465, 10.1038/s41598-020-58315-w - The PP2A-like Protein Phosphatase Ppg1 and the Far Complex Cooperatively Counteract CK2-Mediated Phosphorylation of Atg32 to Inhibit Mitophagy
Kentaro Furukawa; Tomoyuki Fukuda; Shun-ichi Yamashita; Tetsu Saigusa; Yusuke Kurihara; Yutaka Yoshida; Hiromi Kirisako; Hitoshi Nakatogawa; Tomotake Kanki
Cell Reports, Jun. 2018, Reviewed, No invitation
23(12), 3579-3590, 10.1016/j.celrep.2018.05.064 - H2AFX and MDC1 promote maintenance of genomic integrity in male germ cells
Erika Testa; Daniela Nardozi; Cristina Antinozzi; Monica Faieta; Stefano Di Cecca; Cinzia Caggiano; Tomoyuki Fukuda; Elena Bonanno; Lou Zhenkun; Andros Maldonado; Ignasi Roig; Monica Di Giacomo; Marco Barchi
Journal of Cell Science, Mar. 2018, Reviewed, No invitation
131(6), 10.1242/jcs.214411 - Mechanisms and Physiological Roles of Mitophagy in Yeast.
Fukuda T; Kanki T
Molecules and cells, Jan. 2018, Reviewed, No invitation
41(1), 35-44, 10.14348/molcells.2018.2214 - The Rag GTPase-Ragulator complex attenuates TOR complex 1 signaling in fission yeast.
Fukuda T; Shiozaki K
Autophagy, 2018, Reviewed, No invitation
14(6), 1105-1106, 10.1080/15548627.2018.1444313 - Ragulator and GATOR1 complexes promote fission yeast growth by attenuating TOR complex 1 through rag GTPases
Kim Hou Chia; Tomoyuki Fukuda; Fajar Sofyantoro; Takato Matsuda; Takamitsu Amai; Kazuhiro Shiozaki
eLife, Dec. 2017, Reviewed, No invitation
6, 10.7554/eLife.30880 - The central element of the synaptonemal complex in mice is organized as a bilayered junction structure
Abrahan Hernandez-Hernandez; Sergej Masich; Tomoyuki Fukuda; Anna Kouznetsova; Sara Sandin; Bertil Daneholt; Christer Hoog
JOURNAL OF CELL SCIENCE, Jun. 2016, Reviewed, No invitation
129(11), 2239-2249, 10.1242/jcs.182477 - Sororin loads to the synaptonemal complex central region independently of meiotic cohesin complexes
Rocio Gomez; Natalia Felipe-Medina; Miguel Ruiz-Torres; Ines Berenguer; Alberto Viera; Sara Perez; Jose Luis Barbero; Elena Llano; Tomoyuki Fukuda; Manfred Alsheimer; Alberto M. Pendas; Ana Losada; Jose A. Suja
EMBO REPORTS, May 2016, Reviewed, No invitation
17(5), 695-707, 10.15252/embr.201541060 - STAG3-mediated stabilization of REC8 cohesin complexes promotes chromosome synapsis during meiosis
Tomoyuki Fukuda; Nanaho Fukuda; Ana Agostinho; Abrahan Hernandez-Hernandez; Anna Kouznetsova; Christer Hoog
EMBO JOURNAL, Jun. 2014, Reviewed, No invitation
33(11), 1243-1255, 10.1002/embj.201387329 - The Transacting Factor CBF-A/Hnrnpab Binds to the A2RE/RTS Element of Protamine 2 mRNA and Contributes to Its Translational Regulation during Mouse Spermatogenesis
Nanaho Fukuda; Tomoyuki Fukuda; John Sinnamon; Abrahan Hernandez-Hernandez; Manizheh Izadi; Chandrasekhar S. Raju; Kevin Czaplinski; Piergiorgio Percipalle
PLoS Genetics, Oct. 2013
9(10), e1003858-e1003858, 10.1371/journal.pgen.1003858 - Human disease locus discovery and mapping to molecular pathways through phylogenetic profiling
Yuval Tabach; Tamar Golan; Abrahan Hernandez-Hernandez; Arielle R. Messer; Tomoyuki Fukuda; Anna Kouznetsova; Jian-Guo Liu; Ingrid Lilienthal; Carmit Levy; Gary Ruvkun
MOLECULAR SYSTEMS BIOLOGY, Oct. 2013, Reviewed, No invitation
9, 692, 10.1038/msb.2013.50 - Dynamic localization of SMC5/6 complex proteins during mammalian meiosis and mitosis suggests functions in distinct chromosome processes
Rocio Gomez; Philip W. Jordan; Alberto Viera; Manfred Alsheimer; Tomoyuki Fukuda; Rolf Jessberger; Elena Llano; Alberto M. Pendas; Mary Ann Handel; Jose A. Suja
JOURNAL OF CELL SCIENCE, Sep. 2013, Reviewed, No invitation
126(18), 4239-4252, 10.1242/jcs.130195 - ATR acts stage specifically to regulate multiple aspects of mammalian meiotic silencing.
Royo H; Prosser H; Ruzankina Y; Mahadevaiah SK; Cloutier JM; Baumann M; Fukuda T; Höög C; Tóth A; de Rooij DG; Bradley A; Brown EJ; Turner JM
Genes & development, Jul. 2013, Reviewed, No invitation
27(13), 1484-1494, 10.1101/gad.219477.113 - Phosphorylation of Chromosome Core Components May Serve as Axis Marks for the Status of Chromosomal Events during Mammalian Meiosis
Tomoyuki Fukuda; Florencia Pratto; John C. Schimenti; James M. A. Turner; R. Daniel Camerini-Otero; Christer Hoog
PLOS GENETICS, Feb. 2012, Reviewed, No invitation
8(2), e1002485, 10.1371/journal.pgen.1002485 - The Mouse Cohesin-Associated Protein PDS5B Is Expressed in Testicular Cells and Is Associated with the Meiotic Chromosome Axes
Tomoyuki Fukuda; Christer Hoog
GENES, Dec. 2010, Reviewed, No invitation
1(3), 484-494, 10.3390/genes1030484 - A novel mammalian HORMA domain-containing protein, HORMAD1, preferentially associates with unsynapsed meiotic chromosomes
Tomoyuki Fukuda; Katrin Daniel; Lukasz Wojtasz; Attila Toth; Christer Hoog
EXPERIMENTAL CELL RESEARCH, Jan. 2010, Reviewed, No invitation
316(2), 158-171, 10.1016/j.yexcr.2009.08.007 - Rec8 Guides Canonical Spo11 Distribution along Yeast Meiotic Chromosomes
Kazuto Kugou; Tomoyuki Fukuda; Shintaro Yamada; Masaru Ito; Hiroyuki Sasanuma; Saori Mori; Yuki Katou; Takehiko Itoh; Kouji Matsumoto; Takehiko Shibata; Katsuhiko Shirahige; Kunihiro Ohta
MOLECULAR BIOLOGY OF THE CELL, Jul. 2009, Reviewed, No invitation
20(13), 3064-3076, 10.1091/mbc.E08-12-1223 - Analysis of chromatin structure at meiotic DSB sites in yeasts
Kouji Hirota; Tomoyuki Fukuda; Takatomi Yamada; Kunihiro Ohta
Methods in Molecular Biology, 2009, Reviewed, No invitation
557, 253-266, 10.1007/978-1-59745-527-5_16 - Targeted induction of meiotic double-strand breaks reveals chromosomal domain-dependent regulation of Spo11 and interactions among potential sites of meiotic recombination
Tomoyuki Fukuda; Kazuto Kugou; Hiroyuki Sasanuma; Takehiko Shibata; Kunihiro Ohta
NUCLEIC ACIDS RESEARCH, Feb. 2008, Reviewed, No invitation
36(3), 984-997, 10.1093/nar/gkm1082 - Cdc7-dependent phosphorylation of Mer2 facilitates initiation of yeast meiotic recombination
Hiroyuki Sasanuma; Kouji Hirota; Tomoyuki Fukuda; Naoko Kakusho; Kazuto Kugou; Yasuo Kawasaki; Takehiko Shibata; Hisao Masai; Kunihiro Ohta
GENES & DEVELOPMENT, Feb. 2008, Reviewed, No invitation
22(3), 398-410, 10.1101/gad.1626608 - Conditional genomic rearrangement by designed meiotic recombination using VDE (PI-SceI) in yeast
Tomoyuki Fukuda; Yoshikazu Ohya; Kunihiro Ohta
MOLECULAR GENETICS AND GENOMICS, Oct. 2007, Reviewed, No invitation
278(4), 467-478, 10.1007/s00438-007-0264-7 - Meiotic association between Spo11 regulated by Rec102, Rec104 and Rec114
Hiroyuki Sasanuma; Hajime Murakami; Tomoyuki Fukuda; Takehiko Shibata; Alain Nicolas; Kunihiro Ohta
NUCLEIC ACIDS RESEARCH, Feb. 2007, Reviewed, No invitation
35(4), 1119-1133, 10.1093/nar/gkl1162 - Investigation of the mechanism of meiotic DNA cleavage by VMA1-derived endonuclease uncovers a meiotic alteration in chromatin structure around the target site
T Fukuda; K Ohta; Y Ohya
EUKARYOTIC CELL, Jun. 2006, Reviewed, No invitation
5(6), 981-990, 10.1128/EC.00052-06 - Recruitment of RecA homologs Dmc1p and Rad51p to the double-strand break repair site initiated by meiosis-specific endonuclease VDE (PI-SceI).
Tomoyuki Fukuda; Yoshikazu Ohya
Molecular genetics and genomics : MGG, Feb. 2006, Reviewed, No invitation
275(2), 204-14, 10.1007/s00438-005-0078-4 - High-dimensional and large-scale phenotyping of yeast mutants
Y Ohya; J Sese; M Yukawa; F Sano; Y Nakatani; TL Saito; A Saka; T Fukuda; S Ishihara; S Oka; G Suzuki; M Watanabe; A Hirata; M Ohtani; H Sawai; N Fraysse; JP Latge; JM Francois; M Aebi; S Tanaka; S Muramatsu; H Araki; K Sonoike; S Nogami; S Morishita
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, Dec. 2005, Reviewed, No invitation
102(52), 19015-19020, 10.1073/pnas.0509436102 - Molecular mechanism of VDE-initiated intein homing in yeast nuclear genome
Tomoyuki Fukuda; Yuri Nagai; Yoshikazu Ohya
Advances in Biophysics, 2004, Reviewed, No invitation
38, 215-232, 10.1016/S0065-227X(04)80181-3 - VDE-initiated intein homing in Saccharomyces cerevisiae proceeds in a meiotic recombination-like manner
T Fukuda; S Nogami; Y Ohya
GENES TO CELLS, Jul. 2003, Reviewed, No invitation
8(7), 587-602 - Homing at an extragenic locus mediated by VDE (PI-Scel) in Saccharomyces cerevisiae
S Nogami; T Fukuda; Y Nagai; S Yabe; M Sugiura; R Mizutani; Y Satow; Y Anraku; Y Ohya
YEAST, Jun. 2002, Reviewed, No invitation
19(9), 773-782, 10.1002/yea.872 - Viability of Escherichia coli cells under long-term cultivation in a rich nutrient medium
T Fukuda; K Nakahigashi; H Inokuchi
GENES & GENETIC SYSTEMS, Oct. 2001, Reviewed, No invitation
76(5), 271-278
MISC
- Identification and characterization of mitophagy proteins promoting mitochondrial degradation
福田智行; 神吉智丈
生化学, 2024
96(3), 394-398 - 栄養飢餓に応じてTORC1の活性を制御する仕組み
福田智行
化学と生物, Nov. 2022, Not reviewed, No invitation
60(11), 550-552 - IDR領域に違いをもつhnRNP A/BバリアントによるmRNA翻訳制御
福田七穂; PERCIPALLE Piergiorgio; CZAPLINSKI Kevin; 福田智行; 笹岡俊邦
日本分子生物学会年会プログラム・要旨集(Web), 2020
43rd - Molecular mechanism and physiological functions of mitophagy in yeast
Tomoyuki Fukuda
PLANT MORPHOLOGY, 2018, Not reviewed, No invitation
30(1), 31-36 - 細胞シグナル操作法 I.分子からみたシグナル操作法 3.キナーゼ Mammalian target of rapamycin(mTOR)
福田智行; 塩崎一裕
生体の科学, Oct. 2015, Not reviewed, No invitation
66(5), 436-437, 10.11477/mf.2425200295 - Roles of Rec8 in assembly of meiotic recombination initiation complex
Kazuto Kugou; Masaru Ito; Tomoyuki Fukuda; Takehiko Shibata; Kunihiro Ohta
GENES & GENETIC SYSTEMS, Dec. 2011, Not reviewed, No invitation
86(6), 432-432 - Relationship between meiotic cohesin component Rec8 and DSB proteins
Kazuto Kugou; Masaru Ito; Tomoyuki Fukuda; Shintaro Yamada; Takehiko Shibata; Katsuhiko Shirahige; Kunihiro Ohta
GENES & GENETIC SYSTEMS, Dec. 2010, Not reviewed, No invitation
85(6), 416-416 - スローライフの国でサイエンス
福田智行
実験医学, Mar. 2010, Not reviewed, No invitation
28(4), 621-623 - Activation mechanisms of spo11
Hiroyuki Sasanuma; Kazuto Kugou; Fukuda Tomoyuki; Takehiko Shibata; Kunihiro Ohta
GENES & GENETIC SYSTEMS, Dec. 2007, Not reviewed, No invitation
82(6), 505-505 - 染色体増幅,組換え,修復の制御 4.減数分裂期の組換え開始制御
廣田耕志; 福田智行; 太田邦史
実験医学, 15 Mar. 2007, Not reviewed, No invitation
25(5), 732-738 - 最新の生命像に迫る‐6 減数分裂の機構とその制御
福田智行; 太田邦史
化学と生物, 01 Oct. 2005, Not reviewed, No invitation
43(10), 654-661, 10.1271/kagakutoseibutsu1962.43.654
Books and other publications
Research Themes
- 嗅軸索で局所翻訳されるmRNAの網羅的特定と、局所翻訳の機構・意義の包括的な理解
基盤研究(B)
新潟大学
01 Apr. 2025 - 31 Mar. 2028
福田 七穂; 元岡 大祐; 小田 佳奈子; 福田 智行, 福田 七穂; 元岡 大祐; 小田 佳奈子; 福田 智行, 日本学術振興会, 日本学術振興会 - TORC1シグナル伝達経路の活性調節と代謝制御によるTSCの機能補償
Feb. 2025 - Mar. 2026
公益信託康本徳守記念結節性硬化症関連神経難病研究基金, 公益信託康本徳守記念結節性硬化症関連神経難病研究基金, Principal investigator - 脂質膜リモデリング因子によるオルガネラの動態と機能の制御
Nov. 2023 - Oct. 2025
公益財団法人大隅基礎科学創成財団, 公益財団法人大隅基礎科学創成財団 - レセプター依存的マイトファジーの誘導制御と生理機能の解明
基盤研究(B)
01 Apr. 2022 - 31 Mar. 2025
神吉 智丈; 井上 敬一; 山下 俊一; 福田 智行, 神吉 智丈; 井上 敬一; 山下 俊一; 福田 智行, 日本学術振興会, 日本学術振興会 - レセプター依存的マイトファジーの誘導制御と生理機能の解明
基盤研究(B)
新潟大学
01 Apr. 2022 - 31 Mar. 2025
神吉 智丈; 井上 敬一; 山下 俊一; 福田 智行, 神吉 智丈; 井上 敬一; 山下 俊一; 福田 智行, 日本学術振興会, 日本学術振興会 - ミトコンドリア分裂の分子機序と生理機能の解明
Apr. 2023 - Mar. 2025
福田智行, 福田智行, 公益財団法人発酵研究所, 公益財団法人発酵研究所 - マイトファジーによるミトコンドリア分解の機構と生理機能の解明
Nov. 2021 - May 2024
公益財団法人武田科学振興財団, 公益財団法人武田科学振興財団 - マイトファジーによるミトコンドリア分解の機構と生理機能の解明
Nov. 2018 - Mar. 2020
福田 智行, 福田 智行, 公益財団法人武田科学振興財団, 公益財団法人武田科学振興財団, Principal investigator - TOR複合体が刺激に応答して細胞増殖を制御する仕組みの解明
Apr. 2017 - Mar. 2020
福田 智行, 福田 智行, 日本学術振興会, 日本学術振興会, Principal investigator - TOR kinase complexes that sense and integrate major nutritional signals
Grant-in-Aid for Scientific Research (B)
Nara Institute of Science and Technology
01 Apr. 2014 - 31 Mar. 2018
塩崎 一裕; 建部 恒; 福田 智行; 児嶋 長次郎, Shiozaki Kazuhiro; TATEBE Hisashi; FUKUDA Tomoyuki; KOJIMA Chojiro, 日本学術振興会, Japan Society for the Promotion of Science - TOR複合体の活性制御機構の解明
Apr. 2014 - Mar. 2016
福田 智行, 福田 智行, 日本学術振興会, 日本学術振興会, Principal investigator - TOR複合体シグナル伝達経路による細胞増殖と代謝の制御機構解明
Nov. 2014 - Oct. 2015
福田 智行, 福田 智行, 公益財団法人鈴木謙三記念医科学応用研究財団, 公益財団法人鈴木謙三記念医科学応用研究財団, Principal investigator - 哺乳類シナプトネマ複合体の分子ネットワークの解明
Apr. 2013 - Mar. 2014
福田 智行, 福田 智行, 日本学術振興会, 日本学術振興会, Principal investigator - Interplay among recombination, replication, segregation, and chromatin structure.
Grant-in-Aid for Scientific Research on Priority Areas
2005 - 2009
太田 邦史; 廣田 耕志; 福田 智行; ブランゼイ ダーナ; 山田 貴富, OHTA Kunihiro; HIROTA Kouji; FUKUDA Tomoyuki; BRANZEI Dana; YAMADA Takatomi, 日本学術振興会, Japan Society for the Promotion of Science - 可動性遺伝因子による部位特異的染色体切断を利用した組換えの研究
Apr. 2006 - Mar. 2008
福田 智行, 福田 智行, 日本学術振興会, 日本学術振興会, Principal investigator - 利己的遺伝子VDEによる染色体DNA切断を用いた減数分裂期組換えに関する研究
Apr. 2005 - Mar. 2006
福田 智行, 福田 智行, 理化学研究所, 理化学研究所, Principal investigator
Industrial Property Rights
- 特開2008-092862, 特願2006-278217, 組換え開始酵素認識配列の低侵襲染色体導入による減数分裂期組換え分布の制御法
福田 智行, 太田 邦史
