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  1. 原著論文

Neutron and time-resolved X-ray crystallography reveal the substrate recognition and catalytic mechanism of human Nudix hydrolase MTH1

https://repo.qst.go.jp/records/2001682
https://repo.qst.go.jp/records/2001682
404c0585-cd7b-466d-9b8f-d14c82160ba5
アイテムタイプ 学術雑誌論文 / Journal Article(1)
公開日 2025-07-21
タイトル
タイトル Neutron and time-resolved X-ray crystallography reveal the substrate recognition and catalytic mechanism of human Nudix hydrolase MTH1
言語 en
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Hirata Keisuke

× Hirata Keisuke

Hirata Keisuke

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Fujimiya Kana

× Fujimiya Kana

Fujimiya Kana

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Ostermann Andreas

× Ostermann Andreas

Ostermann Andreas

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Schrader Tobias E.

× Schrader Tobias E.

Schrader Tobias E.

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Hiromoto Takeshi

× Hiromoto Takeshi

Hiromoto Takeshi

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Goto Masataka

× Goto Masataka

Goto Masataka

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Arimori Takao

× Arimori Takao

Arimori Takao

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Hirano Yuu

× Hirano Yuu

Hirano Yuu

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Kusaka Katsuhiro

× Kusaka Katsuhiro

Kusaka Katsuhiro

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Tamada Taro

× Tamada Taro

Tamada Taro

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Nakamura Teruya

× Nakamura Teruya

Nakamura Teruya

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内容記述タイプ Abstract
内容記述 Human MTH1, a Nudix enzyme, hydrolyzes several oxidized nucleotides such as 8-oxo-dGTP and 2-oxo-dATP, owing to its broad substrate specificity. MTH1 has also attracted attention as an anticancer target, and its substrate recognition is of biological and medical interest. Previous studies have suggested that MTH1 exhibits broad substrate specificity by changing the protonation states of Asp119 and Asp120 with high pKa. However, the recognition mechanism remains unclear, owing to the difficulty in directly observing hydrogen atoms. Furthermore, a recent time-resolved X-ray study has proposed that Nudix hydrolases catalyze reactions through a new three-metal-ion mechanism. To understand the substrate recognition and catalytic mechanisms of human MTH1, we performed neutron and time-resolved X-ray crystallography. The neutron structures of MTH1 complexed with 8-oxo-dGTP and 2-oxo-dATP revealed the protonation states of the active-site residues, substrates, and water molecules, crucial for substrate binding and catalysis, providing direct experimental evidence that changes in the protonation states of Asp119 and Asp120 enable broad substrate recognition of MTH1. Time-resolved X-ray crystallography was used to visualize the entire reaction process through Mn2+ ion. The combination of neutron and time-resolved X-ray crystallography led to the proposal of a reaction mechanism for MTH1 via three metal-binding sites, including the conformational dynamics of a loop region, nucleophilic substitution, and a potential deprotonation pathway. Overall, the mechanism involving three metal-binding sites may be a general feature in the catalysis of Nudix hydrolases.
書誌情報 PNAS

発行日 2025-07
出版者
出版者 National Academy of Sciences
DOI
識別子タイプ DOI
関連識別子 10.1073/pnas.2510085122
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