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肌动视紫红质:一种用于生物纳米技术应用的高效且稳健的光驱动质子泵。

Actinorhodopsin: an efficient and robust light-driven proton pump for bionanotechnological applications.

作者信息

Ayoub Nooraldeen, Djabeur Nadia, Harder Daniel, Jeckelmann Jean-Marc, Ucurum Zöhre, Hirschi Stephan, Fotiadis Dimitrios

机构信息

Institute of Biochemistry and Molecular Medicine, University of Bern, CH-3012, Bern, Switzerland.

Department of Biochemistry, University of Oxford, Oxford, OX1 3QU, UK.

出版信息

Sci Rep. 2025 Feb 3;15(1):4054. doi: 10.1038/s41598-025-88055-8.

Abstract

Actinorhodopsins are encoded by a distinct group of microbial rhodopsin (MR) genes predominant in non-marine actinobacteria. Despite their role in the global energy cycle and potential for bionanotechnological applications, our understanding of actinorhodopsin proteins is limited. Here, we characterized the actinorhodopsin RlActR from the freshwater actinobacterium Rhodoluna lacicola, which conserves amino acid residues critical for light-driven proton pumping found in MRs. RlActR was efficiently overexpressed in Escherichia coli in milligram amounts and isolated with high purity and homogeneity. The purified RlActR absorbed green light and its primary proton acceptor exhibited a mildly acidic apparent pK. Size-exclusion chromatography of RlActR purified in the relatively mild and harsh detergents 5-cyclohexyl-1-pentyl-β-D-maltoside and n-octyl-β-D-glucopyranoside revealed highly homogeneous oligomers and no disruption into monomers, indicating significant robustness of the RlActR oligomer. Cryo-electron microscopy and 2D classification of protein particles provided a projection structure identifying the oligomeric state of RlActR as a pentamer. Efficient establishment of a proton gradient across lipid membranes upon light illumination was demonstrated using RlActR-overexpressing E. coli cells and reconstituted RlActR proteoliposomes. In summary, these features make RlActR an attractive energizing building block for the bottom-up assembly of molecular systems for bionanotechnological applications.

摘要

肌动视紫红质由一组独特的微生物视紫红质(MR)基因编码,这些基因在非海洋放线菌中占主导地位。尽管它们在全球能量循环中发挥作用以及在生物纳米技术应用方面具有潜力,但我们对肌动视紫红质蛋白的了解仍然有限。在这里,我们对来自淡水放线菌嗜盐红月菌的肌动视紫红质RlActR进行了表征,它保留了MR中对光驱动质子泵至关重要的氨基酸残基。RlActR在大肠杆菌中以毫克量高效过表达,并以高纯度和均一性分离出来。纯化的RlActR吸收绿光,其主要质子受体表现出轻度酸性的表观pK值。在相对温和和苛刻的去污剂5-环己基-1-戊基-β-D-麦芽糖苷和正辛基-β-D-葡萄糖苷中纯化的RlActR的尺寸排阻色谱显示出高度均一的寡聚体,没有破坏成单体,表明RlActR寡聚体具有显著的稳定性。蛋白质颗粒的冷冻电子显微镜和二维分类提供了一种投影结构,确定RlActR的寡聚状态为五聚体。使用过表达RlActR的大肠杆菌细胞和重组的RlActR蛋白脂质体证明了光照后能在脂质膜上有效建立质子梯度。总之,这些特性使RlActR成为用于生物纳米技术应用的分子系统自下而上组装的有吸引力的能量构建块。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebf4/11790970/7b3d87316746/41598_2025_88055_Fig1_HTML.jpg

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