著者
Akihiro Otomo Misao Mizuno Keiichi Inoue Hideki Kandori Yasuhisa Mizutani
出版者
The Biophysical Society of Japan
雑誌
Biophysics and Physicobiology (ISSN:21894779)
巻号頁・発行日
pp.e201016, (Released:2023-02-25)

Direct observation of protein structural changes during ion transport in ion pumps provides valuable insights into the mechanism of ion transport. In this study, we examined structural changes in the light-driven sodium ion (Na+) pump rhodopsin KR2 on the sub-millisecond time scale, corresponding with the uptake and release of Na+. We compared the ion-pumping activities and transient absorption spectra of WT and the W215F mutant, in which the Trp215 residue located near the retinal chromophore on the cytoplasmic side was replaced with a Phe residue. Our findings indicated that atomic contacts between the bulky side chain of Trp215 and the C20 methyl group of the retinal chromophore promote relaxation of the retinal chromophore from the 13-cis to the all-trans form. Since Trp215 is conserved in other ion-pumping rhodopsins, the present results suggest that this residue commonly acts as a mechanical transducer. In addition, we measured time-resolved ultraviolet resonance Raman (UVRR) spectra to show that the environment around Trp215 becomes less hydrophobic at 1 ms after photoirradiation and recovers to the unphotolyzed state with a time constant of around 10 ms. These time scales correspond to Na+ uptake and release, suggesting evolution of a transient ion channel at the cytoplasmic side for Na+ uptake, consistent with the alternating-access model of ion pumps. The time-resolved UVRR technique has potential for application to other ion-pumping rhodopsins and could provide further insights into the mechanism of ion transport.

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外部データベース (DOI)

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A collaborative study on time-resolved UV-resonance Raman spectroscopy of Na+-pump rhodopsin w/ Prof. Mizutani's and Prof. Kandori's teams was published in BPPB. Dr. Otomo, now in Prof. Iino's Lab, found the hydrophobicity decrease around Trp near retinal https://t.co/12ekpX9Vn2
阪大・水谷先生、名工大・神取先生のチームとのNa+ pump型ロドプシンのUV共鳴時間分解Raman分光の共同研究がBPPB誌で公開されました。筆頭著者は現在分子研・飯野研で更にご活躍中の大友さんで、光反応中にRetinal近傍のTrp周辺の疎水性が下がることを明らかとされました。 https://t.co/12ekpX9Vn2 https://t.co/vJ4QKr7JKX

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