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タイトル: Mechanistic insights into intramembrane proteolysis by E. coli site-2 protease homolog RseP
著者: Imaizumi, Yuki
Takanuki, Kazunori
Miyake, Takuya
Takemoto, Mizuki
Hirata, Kunio
Hirose, Mika
Oi, Rika
Kobayashi, Tatsuya
Miyoshi, Kenichi
Aruga, Rie
Yokoyama, Tatsuhiko
Katagiri, Shizuka
Matsuura, Hiroaki
Iwasaki, Kenji
Kato, Takayuki
Kaneko, Mika K.
Kato, Yukinari
Tajiri, Michiko
Akashi, Satoko
Nureki, Osamu
Hizukuri, Yohei  KAKEN_id  orcid https://orcid.org/0000-0003-0594-1160 (unconfirmed)
Akiyama, Yoshinori  KAKEN_id  orcid https://orcid.org/0000-0003-4483-5408 (unconfirmed)
Nogi, Terukazu
著者名の別形: 今泉, 友希
高貫, 一徳
三宅, 拓也
武本, 瑞貴
平田, 邦生
廣瀬, 未果
大井, 里香
小林, 達也
三好, 賢一
有賀, 理江
横山, 達彦
片桐, 静夏
松浦, 滉明
岩崎, 憲治
加藤, 貴之
金子, 美華
加藤, 幸成
田尻, 道子
明石, 知子
濡木, 理
檜作, 洋平
秋山, 芳展
禾, 晃和
発行日: Aug-2022
出版者: American Association for the Advancement of Science (AAAS)
誌名: Science Advances
巻: 8
号: 34
論文番号: eabp9011
抄録: Site-2 proteases are a conserved family of intramembrane proteases that cleave transmembrane substrates to regulate signal transduction and maintain proteostasis. Here, we elucidated crystal structures of inhibitor-bound forms of bacterial site-2 proteases including Escherichia coli RseP. Structure-based chemical modification and cross-linking experiments indicated that the RseP domains surrounding the active center undergo conformational changes to expose the substrate-binding site, suggesting that RseP has a gating mechanism to regulate substrate entry. Furthermore, mutational analysis suggests that a conserved electrostatic linkage between the transmembrane and peripheral membrane-associated domains mediates the conformational changes. In vivo cleavage assays also support that the substrate transmembrane helix is unwound by strand addition to the intramembrane β sheet of RseP and is clamped by a conserved asparagine residue at the active center for efficient cleavage. This mechanism underlying the substrate binding, i.e., unwinding and clamping, appears common across distinct families of intramembrane proteases that cleave transmembrane segments.
記述: 細胞膜の中ではたらく特殊なタンパク質分解酵素の構造を解明 --細菌感染症の新たな治療法の開発へ期待--. 京都大学プレスリリース. 2022-08-25.
著作権等: Copyright © 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC).
This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license, which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
URI: http://hdl.handle.net/2433/276047
DOI(出版社版): 10.1126/sciadv.abp9011
PubMed ID: 36001659
関連リンク: https://www.kyoto-u.ac.jp/ja/research-news/2022-08-25
出現コレクション:学術雑誌掲載論文等

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