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具有DSE基序的微生物视紫红质的生物物理特性

Biophysical characterization of microbial rhodopsins with DSE motif.

作者信息

Marín María Del Carmen, Jaffe Alexander L, West Patrick T, Konno Masae, Banfield Jillian F, Inoue Keiichi

机构信息

The Institute for Solid State Physics, The University of Tokyo, Kashiwa, Chiba 277-8581, Japan.

Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102, USA.

出版信息

Biophys Physicobiol. 2023 Mar 8;20(Supplemental):e201023. doi: 10.2142/biophysico.bppb-v20.s023. eCollection 2023 Mar 21.

Abstract

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.

摘要

微生物视紫红质是一类光感受性跨膜蛋白,可运输离子或调节其他细胞内生物学过程。最近的基因组和宏基因组分析发现了许多具有独特序列、不同于已知序列的微生物视紫红质。对这些新型微生物视紫红质的功能表征有望拓展我们对其生理作用的理解。在此,我们从放线菌成员中发现了在第三个跨膜螺旋中具有DSE基序的微生物视紫红质。尽管表达的蛋白表现出蓝绿光吸收,但未观察到向外的H泵活性,或仅有极小的向外H泵活性。与典型的H泵相比,纯化蛋白光循环反应的周转速率极慢,这表明这些视紫红质可能作为光传感器或H泵发挥作用,其活性由宿主中未知的调节系统增强。这一具有独特基序和功能的视紫红质组的发现拓展了我们对微生物视紫红质生物学作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27c8/10865882/d542364df899/20_e201023-g001.jpg

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