Rchr
J-GLOBAL ID:200901092573853300   Update date: Jan. 31, 2024

Oyama Fumitaka

オヤマ フミタカ | Oyama Fumitaka
Affiliation and department:
Job title: Professor,Visiting Research Scientist, Laboratory for Structural Neuropathology,RIKEN BSI, Japan
Research field  (6): Pathobiochemistry ,  Applied biochemistry ,  Genetics ,  Biochemistry ,  Laboratory animal science ,  Neuroanatomy and physiology
Research keywords  (12): ほ乳類キチナーゼ ,  キチン含有生物の動物食糧への利用 ,  酵素の構造と機能 ,  キチン・キトサン ,  アレルギー・喘息 ,  ヒトの疾患に関係する遺伝子 ,  firefly luciferase ,  Enzyme strucutr-function relationship ,  Chitin・chitosan ,  allergy and asthma ,  Alzheimer's disease ,  Disease-related genes
Research theme for competitive and other funds  (26):
  • 2016 - 2019 Is acidic mammalian chitinase a major glycosidase in the stomachs of mouse and porcine?
  • 2009 - 2019 Studies on the structure and function relationships of proteins using the biotechnological methods
  • 2009 - 2019 Application of animal biomass for medical and pharmacological areas
  • 2009 - 2019 Development of novel methods for isolation and characterization of cells and nucleic acids
  • 2005 - 2015 Biochemical and molecular cell biological analysis of human disease-related genes
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Papers (49):
  • Kazuaki Okawa, Eri Tabata, Yuta Kida, Kyohei Uno, Hidetoshi Suzuki, Minori Kamaya, Peter O. Bauer, Fumitaka Oyama. Irreversible evolutionary loss of chitin-degrading ability in the chitinase-like protein Ym1 under positive selection in rodents. Protein Science. 2023
  • Daisuke Yamanaka, Kento Suzuki, Masahiro Kimura, Fumitaka Oyama, Yoshiyuki Adachi. Functionally modified chitotriosidase catalytic domain for chitin detection based on split-luciferase complementation. Carbohydrate polymers. 2022. 282. 119125-119125
  • Maiko Uehara, Eri Tabata, Mikoto Okuda, Yukari Maruyama, Vaclav Matoska, Peter O. Bauer, Fumitaka Oyama. Robust chitinolytic activity of crab-eating monkey (Macaca fascicularis) acidic chitinase under a broad pH and temperature range. Scientific Reports. 2021. 11. 1
  • Eri Tabata, Akihiro Itoigawa, Takumi Koinuma, Hiroshi Tayama, Akinori Kashimura, Masayoshi Sakaguchi, Vaclav Matoska, Peter O Bauer, Fumitaka Oyama. Noninsect-Based Diet Leads to Structural and Functional Changes of Acidic Chitinase in Carnivora. Molecular Biology and Evolution. 2021
  • Satoshi Wakita, Yasusato Sugahara, Masayuki Nakamura, Syunsuke Kobayashi, Kazuhisa Matsuda, Chinatsu Takasaki, Masahiro Kimura, Yuta Kida, Maiko Uehara, Eri Tabata, et al. Mouse Acidic Chitinase Effectively Degrades Random-Type Chitosan to Chitooligosaccharides of Variable Lengths under Stomach and Lung Tissue pH Conditions. Molecules. 2021. 26. 21. 6706-6706
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MISC (96):
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Books (4):
  • Update article: Chloroquine myopathy suggests that tau is degraded in lysosomes : implication for the formation of paired helical filaments in Alzheimer’s disease.
    Neurosci. Res. Elsevier 1998
  • Nonneural tau: transient upregulation and subsequent accumulation of big and small tau in chloroquine myopathy.
    In Alzheimer's Disease: Biology, Diagnosis and Therapeutics (ed. by Iqbal et al.) 1997
  • Modified nested PCR for the detection of minor molecular variants.
    Neuroscience Protocols. Elsevier 1996
  • 3'-end labeling of DNA fragments by AMV-reverse transcriptase.
    Nucleic Acids Symposium Series. Oxford University Press 1988
Lectures and oral presentations  (65):
  • Analysis of mammalian chitinase mRNA levels in human and mouse tissues
    (The 2014 Annual Meeting of Japan Society for Bioscience, Biotechnology and Agrochemistry 2014)
  • Cloning and expression in Escherichia coli and functional identification of Caulobacter glucoamylase
    (The 2014 Annual Meeting of Japan Society for Bioscience, Biotechnology and Agrochemistry 2014)
  • Characterization of Protein A-mouse acidic mammalian chitinase-V5-His expressed in periplasmic space of Escherichia coli
    (The 2014 Annual Meeting of Japan Society for Bioscience, Biotechnology and Agrochemistry 2014)
  • Expression in Escherichia coli and characterization of two chitinases from Listeria innocua
    (The 2014 Annual Meeting of Japan Society for Bioscience, Biotechnology and Agrochemistry 2014)
  • Preparation of chitin oligomers by hydrolysis with concentrated hydrochloric acid
    (10th International Conference of the Asian Pacific Chitin Chitosan Symposium 2013)
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Works (1):
  • Alternative Splicing of fibronectin pre-mRNA in Human Tissues
    1992 - 1992
Education (6):
  • - 1985 東北大学大学院 農学研究科 農芸化学専攻
  • - 1985 Tohoku University Graduate School of Agricultural Science Agricultural Chemistry Program
  • - 1982 東北大学大学院 農学研究科 農芸化学専攻
  • - 1982 Tohoku University Graduate School of Agricultural Science Agricultural Chemistry Program
  • - 1980 Ibaraki University College of Agriculture
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Professional career (3):
  • BS (Ibaraki University)
  • M.S. (Agricultural Chemistry) (Tohoku University)
  • Ph.D. (Agricultural Chemistry) (Tohoku University)
Work history (16):
  • 2015/04 - 現在 Kogakuin University School of Advanced Engineering, Department of Chemistry and Life Science
  • 2009 - 現在 Professor, Biotechnology Laboratory, Department of Applied Chemistry, Faculty of Engineering, Kogakuin University
  • 2009 - 2015/03 Kogakuin University Faculty of Engineering, Department of Applied Chemistry
  • 2009 - 2012 RIKEN
  • 2009 - 2012 Visiting Research Scientist, Laboratory for Structural Neuropathology, RIKEN Brain Science Institute
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Committee career (4):
  • 2014/01 - 2014/12 Japanese Society for Chitin and Chitosan Board of directors
  • 2014/01 - 2014/12 Board of directors, the Japanese Society for Chitin and Chitosan
  • 2011/01 - 2013/12 Japanese Society for Chitin and Chitosan Board member
  • 2011/01 - 2013/12 Board of the Japanese Society for Chitin and Chitosan
Association Membership(s) (5):
JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY ,  アメリカ人類遺伝学会 ,  日本キチン・キトサン学会 ,  American Society of Human Genetics ,  Japanese Society for Chitin and Chitosan
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