KATAYAMA Mitsunori

Department of Liberal Arts and Basic SciencesAssociate Professor

Research Keyword

  • phototropism
  • 遺伝子発現制御
  • morphogenesis
  • photoresponse
  • cyanobacteria

Field Of Study

  • Life sciences, Plants: molecular biology and physiology, Plant Physiology/Molecule

Career

  • Apr. 2010 - Present
    日本大学生産工学部教養・基礎科学科 准教授
  • Apr. 2007 - Present
    日本大学生産工学部教養・基礎科学科 助教
  • Jan. 2007 - Mar. 2007
    東京大学大学院総合文化研究科広域科学専攻 生命環境科学系 学術支援員
  • Jan. 2002 - Jan. 2007
    東京大学大学院総合文化研究科広域科学専攻 生命環境科学系 助手
  • Apr. 2001 - Jan. 2002
    文部科学省戦略的基礎研究推進事業(CREST)研究員 名古屋大学大学院
  • Nov. 1999 - Mar. 2001
    日本学術振興会特別研究員(PD) 名古屋大学大学院
  • Jun. 1997 - Oct. 1999
    日本学術振興会特別研究員(PD) Texas A & M University Department of Biology

Educational Background

  • 1997
    東京大学大学院, 理学系研究科, 植物学専攻
  • 1994
    静岡大学, 理学部, 生物学科

Paper

  • Complete Genome Sequence of a Thin-Sheath Mutant of the Phototropic Cyanobacterium Calothrix sp. Strain PCC 7716
    Yuu Hirose; Mitsunori Katayama
    Microbiology Resource Announcement, Dec. 2021, Refereed
    Corresponding
  • Genome sequencing of the NIES Cyanobacteria collection with a focus on the heterocyst-forming clade
    Yuu Hirose; Yoshiyuki Ohtsubo; Naomi Misawa; Chinatsu Yonekawa; Nobuyoshi Nagao; Yohei Shimura; Takatomo Fujisawa; Yu Kanesaki; Hiroshi Katoh; Mitsunori Katayama; Haruyo Yamaguchi; Hirofumi Yoshikawa; Masahiko Ikeuchi; Toshihiko Eki; Yasukazu Nakamura; Masanobu Kawachi
    DNA Research, Oct. 2021, Refereed
  • Draft Genome Sequence of the Phototropic Cyanobacterium Rivularia sp. Strain IAM M-261
    Yuu Hirose; Mitsunori Katayama
    Microbiol Resource Announcement, Sep. 2021, Refereed, Not invited
    Last
  • Comparative study of thylakoid membranes in terminal heterocysts and vegetative cells from two cyanobacteria, Rivularia M-261 and Anabaena variabilis, by fluorescence and absorption spectral microscopy
    Shuho Nozue; Mitsunori Katayama; Masahide Terazima; Shigeichi Kumazaki
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, Sep. 2017, Refereed, Not invited
  • Complete Genome Sequence of Cyanobacterium Leptolyngbya sp. NIES-3755.
    Yuu Hirose; Takatomo Fujisawa; Yoshiyuki Ohtsubo; Mitsunori Katayama; Naomi Misawa; Sachiko Wakazuki; Yohei Shimura; Yasukazu Nakamura; Masanobu Kawachi; Hirofumi Yoshikawa; Toshihiko Eki; Yu Kanesaki
    Genome announcements, Mar. 2016, Refereed, Not invited
  • Complete genome sequence of cyanobacterium Fischerella sp. NIES-3754, providing thermoresistant optogenetic tools.
    Hirose Y; Fujisawa T; Ohtsubo Y; Katayama M; Misawa N; Wakazuki S; Shimura Y; Nakamura Y; Kawachi M; Yoshikawa H; Eki T; Kanesaki Y.
    J Biotechnol., Jan. 2016, Refereed, Not invited
  • Complete genome sequence of cyanobacterium Geminocystis sp. strain NIES-3709, which harbors a phycoerythrin-rich phycobilisome.
    Hirose Y; Katayama M; Ohtsubo Y; Misawa N; Iioka E; Suda W; Oshima K; Hanaoka M; Tanaka K; Eki T; Ikeuchi M; Kikuchi Y; Ishida M; Hattori M.
    Genome Announcements, Apr. 2015, Refereed, Not invited
  • CmpR is Important for Circadian Phasing and Cell Growth
    Tanaka H; Kitamura M; Nakano Y; Katayama M; Takahashi Y; Kondo T; Manabe K; Omata T; Kutsuna
    Plant and Cell Physiology, Jun. 2012, Refereed, Not invited
  • Cellulose accumulation and a cellulose synthase gene are responsible for cell aggregation in the cyanobacterium Thermosynechococcus vulcanus RKN.
    Kawano Y; Saotome T; Ochiai Y; Katayama M; Narikawa R; Ikeuchi M.
    Plant Cell Physiol., Jun. 2011, Refereed, Not invited
  • Cyanobacteriochrome CcaS regulates phycoerythrin accumulation in Nostoc punctiforme, a group II chromatic adapter
    Hirose Y; Narikawa R; Katayama M; Ikeuchi M.
    Proc Natl Acad Sci U S A., May 2010, Refereed, Not invited
  • Three major output pathways from the KaiABC-based oscillator cooperate to generate robust circadian kaiBC expression in cyanobacteria.
    Taniguchi Y; Takai N; Katayama M; Kondo T; Oyama T.
    Proc Natl Acad Sci U S A., Feb. 2010, Refereed, Not invited
  • Three major output pathways from the KaiABC-based oscillator cooperate to generate robust circadian kaiBC expression in cyanobacteria
    Yasuhito Taniguchi; Naoki Takai; Mitsunori Katayama; Takao Kondo; Tokitaka Oyama
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, Feb. 2010, Refereed, Not invited
  • Cyanobacteriochrome CcaS is the green light receptor that induces the expression of phycobilisome linker protein.
    Hirose Y; Shimada T; Narikawa R; Katayama M; Ikeuchi M.
    Proc Natl Acad Sci U S A., Jan. 2008, Refereed, Not invited
  • The circadian clock-related gene pex regulates a negative cis element in the kaiA promoter region.
    Kutsuna S; Kondo T; Ikegami H; Uzumaki T; Katayama M; Ishiura M.
    Journal of Bacteriology, Nov. 2007, Refereed, Not invited
  • Cyanobacteriochrome TePixJ of Thermosynechococcus elongatus harbors phycoviolobilin as a chromophore.
    Ishizuka T; Narikawa R; Kohchi T; Katayama M; Ikeuchi M.
    Plant Cell Physiol., Aug. 2007, Refereed, Not invited
  • Cyanobacteriochrome TePixJ of Thermosynechococcus elongatus harbors phycoviolobilin as a chromophore.
    Ishizuka T; Narikawa R; Kohchi T; Katayama M; Ikeuchi M.
    Plant Cell Physiol., 2007, Refereed, Not invited
  • The Membrane-Associated CpcG2-Phycobilisome in Synechocystis: A New Photosystem I Antenna
    Kondo K; Ochiai Y; Katayama M; Ikeuchi M.
    Plant Physiology, 2007, Refereed, Not invited
  • labA: a novel gene required for negative feedback regulation of the cyanobacterial circadian clock protein KaiC.
    Taniguchi Y; Katayama M; Ito R; Takai N; Kondo T; Oyama T.
    Genes and Development, 2007, Refereed, Not invited
  • Fate determination of the flavin photoreceptions in the cyanobacterial blue light receptor TePixD (Tll0078)
    Okajima K; Fukushima Y; Suzuki H; Kita A; Ochiai Y; Katayama M; Shibata Y; Miki K; Noguchi T; Itoh S; Ikeuchi M.
    Journal of Molecular Biology, 2006, Refereed, Not invited
  • Three putative photosensory light, oxygen or voltage (LOV) domains with distinct biochemical properties from the filamentous cyanobacterium Anabaena sp. PCC 7120.
    Narikawa R; Zikihara K; Okajima K; Ochiai Y; Katayama M; Shichida Y; Tokutomi S; Ikeuchi M.
    Photochemistry and Photobiology, 2006, Refereed, Not invited
  • Perception and transduction of light signals by cyanobacteria. Frontiers in Life Sciences
    Katayama M.; and Ikeuchi M.
    Research Signpost, 2006, Not refereed, Not invited
  • Characterization of cyanobacteriochrome TePixJ from a thermophilic cyanobacterium Thermosynechococcus elongatus strain BP-1
    Ishizuka T; Shimada T; Okajima K; Yoshihara S; Ochiai Y; Katayama M; Ikeuchi M.
    Plant and Cell Physiology, 2006, Refereed, Not invited
  • Absence of the psbH gene product destabilizes the Photosystem II complex and prevents association of the Photosystem II-X protein in the thermophilic cyanobacterium Thermosynechococcus elongatus BP-1.
    Iwai M; Katayama M; Ikeuchi M.
    Photosynthesis Research, 2006, Refereed, Not invited
  • phycobilisome assembly in the cyanobacterium Synechocystis sp. PCC 6803
    Kondo K.; Geng; X.; Katayama M.; Ikeuchi M.
    Photosynthesis Research, 2005, Refereed, Not invited
  • Transcriptional regulation of the circadian clock operon kaiBC by upstream regions in cyanobacteria
    Kutsuna S.; Nakahira Y.; Katayama M.; Ishiura M; Kondo T.
    Microbiology, 2005, Refereed, Not invited
  • A novel mutation in kaiC affects resetting of the cyanobacterial circadian clock
    Kiyohara Y.; Katayama M.; Kondo T.
    Journal of Bacteriology, 2005, Refereed, Not invited
  • Biochemical and functional characterization of BLUF-type flavin-binding proteins of two species of cyanobacteria
    Okajima K.; Yoshihara S.; Fukushima Y.; Geng X.; Katayama M.; Higashi S.; Watanabe M.; Sato S.; Tabata S.; Shibata Y.; Itoh S.; Ikeuchi M.
    Journal of Biochemistry (Tokyo), 2005, Refereed, Not invited
  • Global gene repression by KaiC as a master process of prokaryotic circadian system
    Nakahira Y.; Katayama M.; Miyashita H.; Kutsuna S.; Iwasaki H.; Oyama T.; Kondo T.
    Proc Natl Acad Sci U S A., 2004, Refereed, Not invited
  • Response to oxidative stress involves a novel peroxiredoxin gene in the unicellular cyanobacterium Synechocystis sp. PCC 6803
    Kobayashi M.; Ishizuka T.; Katayama M.; Kanehisa M.
    Plant and Cell Physiology, 2004, Refereed, Not invited
  • PSII-Tc protein plays an important role in linearization of photosystem II
    Iwai M.; Katoh H.; Katayama M.; Ikeuchi M.
    Plant and Cell Physiology, 2004, Refereed, Not invited
  • Improved genetic transformation of the thermophilic cyanobacterium, Thermosynechococcus elongatus BP-1.
    Iwai M.; Katoh H.; Katayama M.; Ikeuchi M.
    Plant and Cell Physiology, 2004, Refereed, Not invited
  • Cyanobacterial phytochrome-like PixJ1 holoprotein shows novel reversible photoconversion between blue- and green-absorbing forms
    Yoshihara S.; Katayama M.; Geng X.; Ikeuchi M.
    Plant and Cell Physiology, 2004, Refereed, Not invited
  • Global gene repression by KaiC as a master process of prokaryotic circadian system
    Y Nakahira; M Katayama; H Miyashita; S Kutsuna; H Iwasaki; T Oyama; T Kondo
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, Jan. 2004, Refereed, Not invited
  • ldpA encodes an iron-sulfur protein involved in light-dependent modulation of the circadian period in the cyanobacterium Synechococcus elongatus PCC 7942.
    Katayama M.; Kondo T.; Xiong J.; Golden S. S.
    Journal of Bacteriology, 2003, Refereed, Not invited
    Lead
  • 概日時計と光シグナル伝達 植物の光センシング、細胞工学別冊植物細胞工学シリーズ16
    小山時隆/片山光徳/近藤孝男
    秀潤社, Oct. 2001, Not refereed, Not invited
  • CikA, a bacteriophytochrome that resets the cyanobacterial circadian clock
    Schmitz O.; Katayama M.; Williams S.B.; Kondo T; Golden S.S.
    Science, 2000, Refereed, Not invited
  • cpmA, a gene involved in an output pathway of the cyanobacterial circadian system
    Katayama M.; Tsinoremas N. F.; Kondo T.; and S. S. Golden.
    Journal of Bacteriology, 1999, Not refereed, Not invited
    Lead
  • Expression of an adenylate cyclase gene of Anabaena cylindrica in the cyanobacterium Anabaena sp. strain PCC 7120.
    Katayama M.; and M. Ohmori.
    Plant & Cell Physiology, 1998, Refereed, Not invited
    Lead
  • Isolation and characterization of multiple adenylate cyclase genes from the cyanobacterium Anabaena sp. strain PCC 7120
    Katayama M.; and M. Ohmori.
    Journal of bacteriology, 1997, Refereed, Not invited
    Lead
  • ラン藻におけるcAMPの機構とアデニル酸シクラーゼ遺伝子
    片山光徳、大森正之
    RADIPISOTOPES, 1996, Refereed, Not invited
  • Molecular cloning of the cyanobacterial adenylate cyclase gene from the filamentous cyanobacterium Anabaena cylindrica
    Katayama M.; Wada Y.; and M. Ohmori.
    Journal of Bacteriology, 1995, Not refereed, Not invited
    Lead

MISC

  • DS. Katoh, Y.、vada, M. Katayama, C. Noro, K. Yoshimune, T. Hiaki and M. Matsumoto,"promotion Of Cyanobacteria Growth lnduced by Fine Bubble lnjection
    . Katoh; Y.、vada; M. Katayama; C. Noro; K. Yoshimune; T. Hiaki and M. Matsumoto
    BUII. SOC. sea ~vater sci., Jpn, 2019, Not refereed, Not invited
  • Complete genome sequence of cyanobacterium Nostoc sp. NIES-3756, a potentially useful strain for phytochrome-based bioengineering.
    Hirose Y; Fujisawa T; Ohtsubo Y; Katayama M; Misawa N; Wakazuki S; Shimura Y; Nakamura Y; Kawachi M; Yoshikawa H; Eki T; Kanesaki Y.
    J Biotechnol., 2016, Refereed, Not invited
  • Complete genome sequence of cyanobacterium Geminocystis sp. strain NIES-3708, which performs type II complementary chromatic acclimation.
    Hirose Y; Katayama M; Ohtsubo Y; Misawa N; Iioka E; Suda W; Oshima K; Hanaoka M; Tanaka K; Eki T; Ikeuchi M; Kikuchi Y; Ishida M; Hattori M.
    Genome Announcements, 07 May 2015, Refereed, Not invited
  • Geminocystis属シアノバクテリアに見られる補色応答能の違い
    広瀬侑; 広瀬侑; 片山光徳; 大坪嘉行; 三澤直美; 飯岡恵里香; 須田亙; 大島健志朗; 華岡光正; 田中寛; 浴俊彦; 池内昌彦; 服部正平
    日本ゲノム微生物学会年会要旨集, 2015, Not refereed, Not invited
  • 非モデルシアノバクテリアにおける補色順化の観察
    広瀬侑; 片山光徳; 大島健志朗; 池内昌彦; 服部正平
    日本植物生理学会年会要旨集, 14 Mar. 2013, Not refereed, Not invited
  • 非モデルシアノバクテリアにおける補色順化の観察
    広瀬侑; 片山光徳; 大島健志朗; 池内昌彦; 服部正平
    日本ゲノム微生物学会年会要旨集, 2013, Not refereed, Not invited
  • 補色順化能を持つシアノバクテリアのゲノム解析
    広瀬侑; 飯岡恵里香; 大森恵美; 須田亙; 大島健志朗; 華岡光正; 片山光徳; 田中寛; 池内昌彦; 服部正平
    日本ゲノム微生物学会年会要旨集, 2012, Not refereed, Not invited
  • S13-1 Molecular basis of complementary chromatic acclimation in cyanobacteria(Session 13 Photosynthetic microorganisms-molecular function to ecology,Symposium session)
    Hirose Yuu; Rockwell Nathan C; Ohshima Kenshiro; Narikawa Rei; Katayama Mitsunori; Hanaoka Mitsumasa; Ukaji Yutaka; Inomata Katsuhiko; Lagarias Clark J; Tanaka Kan; Hattori Masahira; Ikeuchi Masahiko
    日本微生物生態学会講演要旨集, 2012, Not refereed, Not invited
  • Novel green-red photoreversible cyanobacteriochrome (AnPixJ): Is the chromophore of green-absorbing form identical to that of Pfr of phytochrome?
    Rei Narikawa; Takami Ishizuka; Yuriko Ochiai; Mitsunori Katayama; Takayuki Kohchi; Masahiko Ikeuchi
    PLANT AND CELL PHYSIOLOGY, 2007, Not refereed, Not invited
  • Biochemical analysis of a new cyanobacteriochrome (Green-red light Photoreceptor : CcaS) which involved in cyanobacterial chromatic acclimation in Synechocystis sp. PCC 6803.
    Yuu Hirose; Rei Narikawa; Yuriko Ochiai; Mitsunori Katayama; Takayuki Kohchi; Masahiko Ikeuchi
    PLANT AND CELL PHYSIOLOGY, 2007, Not refereed, Not invited
  • Biochemical analysis of cyanobacteriochrome TePixJ of a thermophilic cyanobacterium Thermosynechococcus elongatus strain BP-1
    Ishizuka Takami; Okajima Koji; Yoshihara Shizue; Ochiai Yuriko; Katayama Mitsunori; Ikeuchi masahiko
    Plant and Cell Physiology Supplement, 2006
  • Reversible Photoconversion of Cyanobacteriochrome TePixJ of a Thermophilic Cyanobacterium Thermosynechococcus elongatus Strain BP-1
    Ishizuka Takami; Okajima Koji; Yoshihara Shizue; Ochiai Yuriko; Katayama Mitsunori; Ikeuchi Masahiko
    Plant and Cell Physiology Supplement, 2005

Books and other publications

  • CYANOBACTERIAL PHYSIOLOGY
    Joint work, 2. Fundamental physiological processes: Photosynthesis, light-harvesting complex, and carbon-concentrating mechanisms, HAKUTO KAGEYAMA; RUNGAROON WADITEE-SIRISATTHA
    Academic Press, Jun. 2022, Not refereed
    9780323961066

Lectures, oral presentations, etc.

  • シアノバクテリアの光屈性に異常を持つ突然変異体の単離
    日本植物学会第84回大会, Aug. 2020, 日本植物学会, Not invited
  • シアノバクテリアの光屈性の多様性
    片山光徳
    研究集会「シアノバクテリアの生態学的多様性と系統分類」, Nov. 2017, 京都大学生態学研究センター,日本美生物資源学会, Invited
  • 藍藻の光屈性とその分子遺伝学的解析の試み
    片山光徳
    藍藻の分子生物学2015, Nov. 2015, かずさDNA研究所, Invited
  • Formation of phototropic bending in filamentous cyanobacterium Rivularia sp. M-261
    片山光徳
    第56回日本植物生理学会年会, Mar. 2015, 一般社団法人 日本植物生理学会, Not invited
  • 屈光性ラン藻Calothrix sp.PCC7716の内在性プラスミドを用いた宿主‐ベクター系の開発の試み
    片山光徳
    日本植物学会76回年会, Sep. 2012, 日本植物学会大会, Not invited
  • Scytonema 属シアノバクテリアの屈光性
    加藤浩
    日本植物学会第74回年会, Sep. 2010, 日本植物学会, Not invited
  • Phototropism of cyanobacteria
    International symposium on phototropic prokaryotes, Aug. 2009, Not invited
  • Fischerella sp. that exhibits phototropic response
    片山光徳
    日本植物生理学会, Mar. 2009, Not invited
  • 屈光性を示すシアノバクテリアの探索
    片山光徳; 小林真理; 池内昌彦
    The Japanese Society of Plant Physiologists, Mar. 2008, Not invited
  • シアノバクテリア Rivularia sp. に見られる屈光性
    片山光徳; 小林 真理; 池内 昌彦
    The Japanese Society of Plant Physiologhists, Mar. 2007, Not invited
  • 糸状性藍藻 Rivularia sp. の屈光性
    片山 光徳; 小林 真理; 池内 昌彦
    日本植物学会, Sep. 2006, Not invited
  • ゲノムから見た光合成の光質適応
    片山光徳 耿 暁星 小林真理 矢野史子 金久實 池内昌彦
    日本植物学会, Sep. 2006, Not invited

Affiliated academic society

  • 日本植物生理学会
  • 日本植物学会
  • 日本時間生物学会
  • 日本分子生物学会

Research Themes

  • Structural and functional studies on novel photoreceptors and photoregulations in cyanobacteria
    Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research, 2004 - 2007
    IKEUCHI Masahiko; KATAYAMA Mitsunori; YOSHIHARA Shizue