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关于 9 型分泌系统转位器进行蛋白质运输的机制的结构见解。

Structural insights into the mechanism of protein transport by the Type 9 Secretion System translocon.

机构信息

Department of Biochemistry, University of Oxford, Oxford, UK.

de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.

出版信息

Nat Microbiol. 2024 Apr;9(4):1089-1102. doi: 10.1038/s41564-024-01644-7. Epub 2024 Mar 27.

Abstract

Secretion systems are protein export machines that enable bacteria to exploit their environment through the release of protein effectors. The Type 9 Secretion System (T9SS) is responsible for protein export across the outer membrane (OM) of bacteria of the phylum Bacteroidota. Here we trap the T9SS of Flavobacterium johnsoniae in the process of substrate transport by disrupting the T9SS motor complex. Cryo-EM analysis of purified substrate-bound T9SS translocons reveals an extended translocon structure in which the previously described translocon core is augmented by a periplasmic structure incorporating the proteins SprE, PorD and a homologue of the canonical periplasmic chaperone Skp. Substrate proteins bind to the extracellular loops of a carrier protein within the translocon pore. As transport intermediates accumulate on the translocon when energetic input is removed, we deduce that release of the substrate-carrier protein complex from the translocon is the energy-requiring step in T9SS transport.

摘要

分泌系统是一种蛋白质输出机器,使细菌能够通过释放蛋白质效应子来利用其环境。9 型分泌系统(T9SS)负责将蛋白质穿过细菌的外膜(OM)进行输出,这些细菌属于拟杆菌门。在这里,我们通过破坏 T9SS 马达复合物来捕捉 Flavobacterium johnsoniae 的 T9SS 在底物运输过程中的状态。对纯化的结合底物的 T9SS 转运子进行冷冻电镜分析揭示了一个扩展的转运子结构,其中先前描述的转运子核心被一个包含 SprE、PorD 和经典周质伴侣 Skp 同源物的周质结构所增强。底物蛋白结合到转运子孔内载体蛋白的细胞外环上。当能量输入被去除时,转运中间体在转运子上积累,我们推断从转运子释放底物-载体蛋白复合物是 T9SS 运输中需要能量的步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f22b/10994853/ce9456ee6f4f/41564_2024_1644_Fig1_HTML.jpg

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