National Institutes for Quantum and Radiological Science and Technology Quantum Beam Science Research Directorate, Takasaki Advanced Radiation Research Institute
About National Institutes for Quantum and Radiological Science and Technology Quantum Beam Science Research Directorate, Takasaki Advanced Radiation Research Institute
2013 - 2017 Elucidation of catalytic mechanism of NADH-cytochrome b5 reductase by time-resolved X-ray and neutron analyses
2015 - 2017 タンパク質の中性子構造解析による重水素化および測定温度の影響評価
2013 - 2015 鉄硫黄タンパク質における酸化還元状態安定化機構の解明
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Papers (30):
Yuya Hanazono, Yu Hirano, Taro Tamada, Kunio Miki. Description of peptide bond planarity from high-resolution neutron crystallography. Biophysics and physicobiology. 2023. 20. 3. e200035
Chikako Kuroki, Yu Hirano, Mami Nakazawa, Tatsuji Sakamoto, Taro Tamada, Mitsuhiro Ueda. A single mutation Asp43Arg was increased 2.5-fold the catalytic activity and maintained the stability of cold-adapted endo-1,4-beta glucanase (Ef-EG2) from Eisenia fetida. Current Research in Biotechnology. 2023. 5. 100126-100126
Takeshi Hiromoto, Koji Nishikawa, Seiya Inoue, Hideaki Ogata, Yuta Hori, Katsuhiro Kusaka, Yu Hirano, Kazuo Kurihara, Yasuteru Shigeta, Taro Tamada, et al. New insights into the oxidation process from neutron and X-ray crystal structures of an O2-sensitive [NiFe]-hydrogenase. Chemical Science. 2023
Yuya Hanazono, Yu Hirano, Kazuki Takeda, Katsuhiro Kusaka, Taro Tamada, Kunio Miki. Revisiting the concept of peptide bond planarity in an iron-sulfur protein by neutron structure analysis. Science Advances. 2022. 8. 20
Tadayoshi Kanao, Naruki Hase, Hisayuki Nakayama, Kyoya Yoshida, Kazumi Nishiura, Megumi Kosaka, Kazuo Kamimura, Yu Hirano, Taro Tamada. Reaction mechanism of tetrathionate hydrolysis based on the crystal structure of tetrathionate hydrolase from Acidithiobacillus ferrooxidans. Protein science : a publication of the Protein Society. 2020. 30. 2. 328-338