Rchr
J-GLOBAL ID:200901072151192881
Update date: Oct. 14, 2024
Iida Hidetoshi
イイダ ヒデトシ | Iida Hidetoshi
Affiliation and department:
Job title:
Professor Emeritus and Research Fellow
Other affiliations (1):
-
Ohsumi Frontier Science Foundation
Board Member
Research field (1):
Molecular biology
Research keywords (11):
Yeast molecular biology
, Mechanosensing mechanism
, Calcium signaling
, Calcium channels
, Arabidopsis
, Saccharomyces cerevisiae
, Calcium signal transduction
, Signal transduction
, Mechanical stress
, Voltage-gated calcium channel
, Mechanosensitive channel
Research theme for competitive and other funds (43):
- 2023 - 2027 Electrophysiological characterization and 3D-structure of land plant-specific calcium-permeable mechanosensitive channels
- 2019 - 2023 Codon selection mechanism and protein translocation mechanism of a calcium channel regulatory subunit in budding yeast
- 2017 - 2020 Study on the electrophysiological characteristics and structure of the novel Ca2+ permeable mechanosensitive channels of plants
- 2016 - 2019 Elucidation of calcium recognition mechanism at low temperature by calmodulin-like protein
- 2015 - 2018 Single molecule kinetics analyses of AIP1-enhanced actin filament severing
- 2014 - 2018 Role of regions responsible for the interaction between subunits of a voltage-gated calcium channel of non-excitable cells
- 2013 - 2016 Cell membrane dynamics in gravity resistance of plants
- 2011 - 2014 シロイヌナズナの機械刺激受容体の構造と機能
- 2011 - 2013 シロイヌナズナの機械刺激受容体の構造と機能
- 2009 - 2011 Roles of novel mechanosensitive calcium channels in perception of physical stimuli in Arabidopsis
- 2009 - 2010 シロイヌナズナの新規カルシウム透過性機械刺激センサーの動作機構
- 2008 - 2010 Analysis of yeast Cch1, a homologue of animal voltage-gated calcium channel pore subunit, and its regulatory factor Mid1.
- 2007 - 2008 シロイヌナズナのカルシウム透過性機械刺激センサーの動作機構
- 2004 - 2006 Structure-function relationships of a yeast putative stretch-activated calcium channel
- 2003 - 2004 シロイヌナズナの器官形成における機械刺激受容カルシウムチャネルの役割
- 2001 - 2003 STUDY ON THE STRUCTURE FUNCTION AND PHYSIOLOGICAL ROLES OF SA CHANNELS
- 1997 - 2000 光合成機能統御におけるカルシウムシグナルの発生と伝達の分子生物学的研究
- 1999 - 1999 光合成機能統御におけるカルシウムシグナルの発生と伝達の分子生物学的研究
- 1998 - 1998 光合成機能統御におけるカルシウムシグナルの発生と伝達の分子生物学的研究
- 1997 - 1998 Molecular Cell Biological Study on Calcium Signaling
- 1997 - 1997 光合成機能統御におけるカルシウムシグナルの発生と伝達の分子生物学的研究
- 1997 - 1997 高等植物Ca2+チャネル遺伝子とCa2+シグナル関連遺伝子群の単離と解析
- 1996 - 1996 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1996 - 1996 高等植物Ca^<2+>チャネル遺伝子の単離と解析
- 1995 - 1995 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1994 - 1995 細胞周期制御におけるCa2+シグナルの伝達機構と役割の分子生物学的研究
- 1994 - 1995 ストレス応答におけるCa2+とCa2+依存性タンパク質の役割
- 1994 - 1994 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1994 - 1994 細胞周期制御におけるCa^<2+>シグナルの伝達機構と役割の分子生物学的研究
- 1994 - 1994 ストレス応答におけるCa^<2+>とCa^<2+>依存性タンパク質の役割
- 1993 - 1993 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1993 - 1993 細胞周期制御におけるCa^<2+>シグナルの伝達機構の役割の分子生物学的研究
- 1993 - 1993 ストレス応答におけるCa^<2+>とCa^<2+>依存性タンパク質の役割
- 1992 - 1993 カルシウムイオン輸送と共役ネットワーク
- 1991 - 1993 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1992 - 1992 カルシウムシグナルの発生と伝達に関する分子細胞生物学的研究
- 1992 - 1992 カルシウムイオン輸送と共役ネットワーク
- 1992 - 1992 細胞複製制御におけるCa^<2+>の役割の分子生物学的研究
- 1991 - 1992 Establishment and its pharmacological application of novel
- 1991 - 1991 Ca2+/カルモデュリンによる核分裂制御機構の解析
- 1990 - 1990 Ca^<2+>/カルモデュリンによる核分裂制御機構の解析
- 1988 - 1989 Mechanisms of cell cycle control by calcium ion.
- 1984 - 1986 Role of cytoskeletal proteins and heat shock proteins in regulation of cell growth
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Papers (97):
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Miki Kubota, Kendo Mori, Hidetoshi Iida. Physiological roles of Arabidopsis MCA1 and MCA2 based on their dynamic expression patterns. J. Plant Res. 2024. 137. 5. 785-797
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Masataka Nakano, Takuya Furuichi, Masahiro Sokabe, Hidetoshi Iida, Sachiko Yano, Hitoshi Tatsumi. Entanglement of Arabidopsis seedlings to a mesh substrate under microgravity conditions in KIBO on the ISS. Plants. 2022. 11. 7. 956-956
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Kenjiro Yoshimura, Kazuko Iida, Hidetoshi Iida. MCAs in Arabidopsis are Ca2+-permeable mechanosensitive channels inherently sensitive to membrane tension. Nature Communications. doi.org/10.1038/s41467-021-26363-z. 2021
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Kanae Nishii, Michael Möller, Hidetoshi Iida. Mix and match: Patchwork domain evolution of the land plant-specific Ca2+-permeable mechanosensitive channel MCA. PLOS ONE. 2021. 16. 4. e0249735. doi: 10.1371/journl.pone.0249735-e0249735
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Hiroshi Tojo, Aki Nakamura, Ali Ferjani, Yusuke Kazama, Tomoko Abe, Hidetoshi Iida. A method enabling comprehensive isolation of Arabidopsis mutants exhibiting unusual root mechanical behavior. Frontiers in Plant Science 12:646404. 2021. 12. 646404-646404
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MISC (47):
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MIURA Kenji, IIDA Hidetoshi. Role of Ca2+-permeable channels MCA1 and MCA2 in response to cold stress. Cryobiology and Cryotechnology. 2019. 65. 2. 45-50
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Yoshitaka Nakayama, Kenjiro Yoshimura, Hidetoshi Iida, Co-corresponding authors. Organellar Mechanosensitive Channels Regulate the Hypo-Osmotic Response in Fission Yeast. BIOPHYSICAL JOURNAL. 2013. 104. 2. 468A-468A
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山崎友香里, 西川大輔, 来須孝光, 櫻井康博, 山中拓哉, 中川祐子, 片桐健, 飯田和子, 篠崎一雄, 飯田秀利, et al. イネの浸透圧ストレス応答におけるCa2+流入制御因子候補OsMca1の機能解析. 日本植物学会大会研究発表記録. 2009. 73rd
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Jinfeng Teng, Hiroko Izumi-Nakaseko, Kazuko Iida, Masanori Ito, Itaru Kojima, Satomi Adachi-Akahane, Hidetoshi Iida. ROLE OF GLYCINE RESIDUES HIGHLY CONSERVED IN THE DOMAIN I/II S2-S3 LINKERS OF VOLTAGE-GATED CALCIUM CHANNEL alpha1 SUBUNITS. JOURNAL OF PHYSIOLOGICAL SCIENCES. 2009. 59. 251-251
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来須孝光, 西川大輔, 山崎友香里, 櫻井康博, 山中拓哉, 中川祐子, 片桐健, 飯田和子, 篠崎一雄, 飯田秀利, et al. イネのストレス応答におけるCa2+流入制御因子候補OsMCA1の機能解析. 日本植物学会大会研究発表記録. 2008. 72nd
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Books (21):
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Encyclopedia of Bioacourstics
Asakura Publishing Co., Ltd 2019
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植物ゲノム科学事典(分担執筆)
朝倉書店 2009
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分子細胞生物学辞典 第2版(分担執筆)
東京化学同人 2008
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生化学辞典 第4版(分担執筆)
東京化学同人 2007
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酵母のすべてー系統、細胞から分子まで(分担執筆)
シュプリンガー・フェアラーク東京 2007
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Lectures and oral presentations (159):
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Molecular mechanisms of plant growth and development in the ISS, a closed environment under microgravity
(40th Annual Meeting of International Society for Gravitational Physiology (ISGP) 2019)
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カルシウム透過性機械受容チャネルの低温感受における役割
(日本植物学会第76回大会 2012)
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Mechanosensitive Ca<sup>2+</sup>channel candidates MCA1 and MCA2 in Arabidopsis
(7th Plant Biomechanics International Conference 2012)
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New candidates for the mechanosensitive channel that may be involved in gravity sensing(
(2012)
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Mechanosensitive channels are activated via actin stress fibers, which may be involved in gravity sensing in plants
(ISLSWG Workshop "Plant Biology in Space" 2012)
more...
Works (3):
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Studies on mechanosensitive channels as gravity sensing in mammalian cells
1999 - 2000
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Studies on stretch-activated calcium channels
1998 - 2000
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Molecular mechanisms of gravity sensing in plants
2000 -
Education (2):
- 1975 - 1978 The University of Tokyo, Graduate School of Sciences Department of Biophysics and Biochemistry
- 1970 - 1974 Ibaraki University, Faculty of Sciences, Department of Biology
Professional career (1):
- Ph.D. (University of Tokyo)
Work history (12):
- 2016 - 現在 Tokyo Gakugei University, Professor Emeritus
- 2000 - 2016 Tokyo Gakugei University, Department of Biology, Professor
- 2010 - 2014 Tokyo Gakugei University-Attahed Koganei Elementary School, Principal (concurrent post)
- 2007 - 2010 Okazaki Institute for Integrative Bioscience, National Institutes of Natural Sciences, Adjunct Professor (concurrent post)
- 2000 - 2006 Japan Science and Technology Agency (JST), CREST, Research Director (concurrent post)
- 1996 - 2000 Tokyo Gakugei University, Associate Professor
- 1996 - 2000 Tokyo Gakugei University, Department of Biology
- 1995 - 1996 National Institute for Basic Biology, Associate Professor
- 1987 - 1995 National Institute for Basic Biology, Assistant Professor
- 1985 - 1987 Dana-Farber Cancer Institute, Harvard Medical School, Research Fellow
- 1985 - 1987 Harvard University
- 1978 - 1985 The Tokyo Metropolitan Institute of Medical Science, Research Staff
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Awards (3):
- 2020/09 - Botanical Society of Japan, BSJ Academic Prize "Discovery of plant-specific calcium-permeable mechanosensitive channels and elucidation of their roles in plant growth and the mechanoresponse"
- 2019/09 - Asia and Oceania Society for Photobiology, AOSP Award "Development and dissemination of a cytosolic calcium concentration-monitoring system using the photoprotein aequorin"
- 2017/09 - The Botanical Society of Japan, BSJ Special Prize "Biology education of primary school students as a scientist"
Association Membership(s) (7):
American Society for Biochemistry and Molecular Biology
, 日本植物学会
, 日本植物生理学会
, 日本生化学会
, 日本分子生物学会
, 酵母細胞研究会
, 酵母遺伝学フォーラム
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