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基于结构的视紫红质进化研究。

Structure-based insights into evolution of rhodopsins.

机构信息

Institute of Biological Information Processing (IBI-7: Structural Biochemistry), ForschungszentrumJülich, Jülich, Germany.

JuStruct: Jülich Center for Structural Biology, Forschungszentrum Jülich, Jülich, Germany.

出版信息

Commun Biol. 2021 Jun 30;4(1):821. doi: 10.1038/s42003-021-02326-4.

Abstract

Rhodopsins, most of which are proton pumps generating transmembrane electrochemical proton gradients, span all three domains of life, are abundant in the biosphere, and could play a crucial role in the early evolution of life on earth. Whereas archaeal and bacterial proton pumps are among the best structurally characterized proteins, rhodopsins from unicellular eukaryotes have not been well characterized. To fill this gap in the current understanding of the proton pumps and to gain insight into the evolution of rhodopsins using a structure-based approach, we performed a structural and functional analysis of the light-driven proton pump LR (Mac) from the pathogenic fungus Leptosphaeria maculans. The first high-resolution structure of fungi rhodopsin and its functional properties reveal the striking similarity of its membrane part to archaeal but not to bacterial rhodopsins. We show that an unusually long N-terminal region stabilizes the protein through direct interaction with its extracellular loop (ECL2). We compare to our knowledge all available structures and sequences of outward light-driven proton pumps and show that eukaryotic and archaeal proton pumps, most likely, share a common ancestor.

摘要

视紫红质,大多数是质子泵,产生跨膜电化学质子梯度,跨越生命的所有三个领域,在生物圈中丰富存在,并可能在地球生命的早期进化中发挥关键作用。虽然古菌和细菌的质子泵是结构特征研究最好的蛋白之一,但单细胞真核生物的视紫红质尚未得到很好的表征。为了填补目前对质子泵的理解中的这一空白,并通过基于结构的方法深入了解视紫红质的进化,我们对致病真菌麦类核腔菌的光驱动质子泵 LR(Mac)进行了结构和功能分析。这是真菌视紫红质的第一个高分辨率结构及其功能特性揭示了其膜部分与古菌而非细菌视紫红质惊人的相似性。我们表明,一个异常长的 N 端区域通过与细胞外环(ECL2)的直接相互作用稳定蛋白质。我们将所有可用的向外光驱动质子泵的结构和序列进行比较,并表明真核生物和古菌质子泵很可能具有共同的祖先。

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