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タイトル: Structural basis for channel conduction in the pump-like channelrhodopsin ChRmine
著者: Kishi, Koichiro E.
Kim, Yoon Seok
Fukuda, Masahiro
Inoue, Masatoshi
Kusakizako, Tsukasa
Wang, Peter Y.
Ramakrishnan, Charu
Byrne, Eamon F.X.
Thadhani, Elina
Paggi, Joseph M.
Matsui, Toshiki E.
Yamashita, Keitaro
Nagata, Takashi
Konno, Masae
Quirin, Sean
Lo, Maisie
Benster, Tyler
Uemura, Tomoko
Liu, Kehong
Shibata, Mikihiro
Nomura, Norimichi  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0002-6330-2239 (unconfirmed)
Iwata, So
Nureki, Osamu
Dror, Ron O.
Inoue, Keiichi
Deisseroth, Karl
Kato, Hideaki E.
著者名の別形: 岸, 孝一郎
福田, 昌弘
井上, 昌俊
草木迫, 司
松井, 俊貴
永田, 崇
今野, 雅恵
植村, 智子
劉, 紅
柴田, 幹大
野村, 紀通
岩田, 想
濡木, 理
井上, 圭一
加藤, 英明
キーワード: channelrhodopsin
optogenetics
microbial opsin
all-optical
ChRmine
cryo-EM
structure-guided engineering
pump-like channelrhodopsin
PLCR
発行日: Feb-2022
出版者: Elsevier BV
Cell Press
誌名: Cell
巻: 185
号: 4
開始ページ: 672
終了ページ: 689
論文番号: e23
抄録: ChRmine, a recently discovered pump-like cation-conducting channelrhodopsin, exhibits puzzling properties (large photocurrents, red-shifted spectrum, and extreme light sensitivity) that have created new opportunities in optogenetics. ChRmine and its homologs function as ion channels but, by primary sequence, more closely resemble ion pump rhodopsins; mechanisms for passive channel conduction in this family have remained mysterious. Here, we present the 2.0 Å resolution cryo-EM structure of ChRmine, revealing architectural features atypical for channelrhodopsins: trimeric assembly, a short transmembrane-helix 3, a twisting extracellular-loop 1, large vestibules within the monomer, and an opening at the trimer interface. We applied this structure to design three proteins (rsChRmine and hsChRmine, conferring further red-shifted and high-speed properties, respectively, and frChRmine, combining faster and more red-shifted performance) suitable for fundamental neuroscience opportunities. These results illuminate the conduction and gating of pump-like channelrhodopsins and point the way toward further structure-guided creation of channelrhodopsins for applications across biology.
記述: 新規光駆動型イオンチャネルの構造解明と高性能分子ツールの創出 --神経科学に光を当てる--. 京都大学プレスリリース. 2022-02-03.
著作権等: © 2022 The Author(s). Published by Elsevier Inc.
This is an open access article under the Creative Commons Attribution 4.0 International license.
URI: http://hdl.handle.net/2433/267986
DOI(出版社版): 10.1016/j.cell.2022.01.007
PubMed ID: 35114111
関連リンク: https://www.kyoto-u.ac.jp/ja/research-news/2022-02-03
出現コレクション:学術雑誌掲載論文等

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