Research keywords (1):
enzymology, protein science
Research theme for competitive and other funds (6):
D-乳酸脱水素酵素の基質認識と触媒機構に関する研究
アロステリック L-乳酸脱水素の活性調節機構に関する研究
ユーヒドロキシ酸脱水素酵素の構造と機能に関する研究
Study on substrate-recognition and catalytic mechanism of D-lactate dehydrogenase
Study on the regulation mechanism in allosteric L-lactate dehydrogenas
Study on structures and functions of 2-hydroxyacid dehydrogenase
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Papers (59):
Nozaka, A, Nishiwaki, A, Nagashima, Y, Endo, S, Kuroki, M, Nakajima, M, Narukawa, M, Kamisuki, S, Arazoe, T, Taguchi, H, et al. Chloramphenicol inhibits eukaryotic Ser/Thr phosphatase and infection-specific cell differentiation in the rice blast fungus. SCI REP-UK. 2019
Nobukiyo Tanaka, Masahiro Nakajima, Megumi Narukawa-Nara, Hiroki Matsunaga, Shinji Kamisuki, Hiroki Aramasa, Yuta Takahashi, Naohisa Sugimoto, Koichi Abe, Tohru Terada, et al. Identification, characterization, and structural analyses of a fungal endo-beta-1,2-glucanase reveal a new glycoside hydrolase family. JOURNAL OF BIOLOGICAL CHEMISTRY. 2019. 294. 19. 7942-7965
Findings of new CAZymes, β-1,2-glucan-associated enzymes
(13th Carbohydrate Bioengineering Meeting 2019)
A fungal endo-β-1,2-glucanase with a unique reaction mechanism belongs to a new glycoside hydrolase family
(13th Carbohydrate Bioengineering Meeting 2019)