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十个关于菱形跨膜蛋白酶水解的催化快照,从门的打开到肽的释放。

Ten catalytic snapshots of rhomboid intramembrane proteolysis from gate opening to peptide release.

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, MD, USA.

出版信息

Nat Struct Mol Biol. 2019 Oct;26(10):910-918. doi: 10.1038/s41594-019-0296-9. Epub 2019 Sep 30.

Abstract

Protein cleavage inside the cell membrane triggers various pathophysiological signaling pathways, but the mechanism of catalysis is poorly understood. We solved ten structures of the Escherichia coli rhomboid protease in a bicelle membrane undergoing time-resolved steps that encompass the entire proteolytic reaction on a transmembrane substrate and an aldehyde inhibitor. Extensive gate opening accompanied substrate, but not inhibitor, binding, revealing that substrates and inhibitors take different paths to the active site. Catalysis unexpectedly commenced with, and was guided through subsequent catalytic steps by, motions of an extracellular loop, with local contributions from active site residues. We even captured the elusive tetrahedral intermediate that is uncleaved but covalently attached to the catalytic serine, about which the substrate was forced to bend dramatically. This unexpectedly stable intermediate indicates rhomboid catalysis uses an unprecedented reaction coordinate that may involve mechanically stressing the peptide bond, and could be selectively targeted by inhibitors.

摘要

细胞膜内的蛋白质裂解会触发各种病理生理信号通路,但催化机制尚不清楚。我们在双层膜中解决了十个大肠杆菌菱形蛋白酶的结构,这些结构经历了时分辨率步骤,涵盖了跨膜底物和醛抑制剂的整个蛋白水解反应。广泛的门打开伴随着底物,但不是抑制剂的结合,揭示了底物和抑制剂采取不同的途径到达活性位点。出乎意料的是,催化作用是从细胞外环的运动开始的,并通过随后的催化步骤进行引导,局部来自活性位点残基的贡献。我们甚至捕获了难以捉摸的四面体中间产物,它没有被切割,但与催化丝氨酸共价连接,底物被迫对此进行剧烈弯曲。这个出乎意料的稳定中间产物表明菱形蛋白酶使用了一种前所未有的反应坐标,可能涉及对肽键施加机械应力,并且可以被抑制剂选择性靶向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/869c/6858540/f8ae34b9ce34/nihms-1537267-f0001.jpg

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