著者
María del Carmen Marín Alexander L. Jaffe Patrick T. West Masae Konno Jillian F. Banfield Keiichi Inoue
出版者
The Biophysical Society of Japan
雑誌
Biophysics and Physicobiology (ISSN:21894779)
巻号頁・発行日
pp.e201023, (Released:2023-03-08)
被引用文献数
1

Microbial rhodopsins are photoreceptive transmembrane proteins that transport ions or regulate other intracellular biological processes. Recent genomic and metagenomic analyses found many microbial rhodopsins with unique sequences distinct from known ones. Functional characterization of these new types of microbial rhodopsins is expected to expand our understanding of their physiological roles. Here, we found microbial rhodopsins having a DSE motif in the third transmembrane helix from members of the Actinobacteria. Although the expressed proteins exhibited blue–green light absorption, either no or extremely small outward H+ pump activity was observed. The turnover rate of the photocycle reaction of the purified proteins was extremely slow compared to typical H+ pumps, suggesting these rhodopsins would work as photosensors or H+ pumps whose activities are enhanced by an unknown regulatory system in the hosts. The discovery of this rhodopsin group with the unique motif and functionality expands our understanding of the biological role of microbial rhodopsins.

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外部データベース (DOI)

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Our collaborative paper with Prof. Banfield's lab. @BanfieldLab on rhodopsins with a novel DSE motif was published in Biophys. Physicobiol. They are derived from lichen microbiome and exhibit long photocycle. @MaicaMarinPerez @alexander_jaffe @miyabiI5 https://t.co/iq5f0FKCZM https://t.co/bwp3gXTbcw
UC Berkeley・BanBanfield研との新しいDSEモチーフを持つロドプシンについての共同研究論文がBiophys. Physicobiol.誌に公開されました。これらは地衣類の細菌叢に由来し、非常に長い光サイクルを持つのが特徴です。 @MaicaMarinPerez @alexander_jaffe @miyabiI5 https://t.co/hsZREOD37v https://t.co/5B2ZzQtHH1

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