菌毛
细菌接合
生物发生
分泌物
质粒
细菌外膜
细菌细胞结构
生物
细胞生物学
化学
细菌
DNA
生物物理学
基因
大肠杆菌
生物化学
遗传学
作者
Carlos A. Blanco,K.V. Abhinav,Adam Redzej,Natalya Lukoyanova,Clasien J. Oomen,Nathalie Braun,Marta Ukleja,Fang Lu,Tiago R. D. Costa,Elena V. Orlova,David Baker,Nick V. Grishin,Gabriel Waksman
出处
期刊:Nature
[Springer Nature]
日期:2022-06-22
卷期号:607 (7917): 191-196
被引量:66
标识
DOI:10.1038/s41586-022-04859-y
摘要
Bacterial conjugation is the fundamental process of unidirectional transfer of DNAs, often plasmid DNAs, from a donor cell to a recipient cell1. It is the primary means by which antibiotic resistance genes spread among bacterial populations2,3. In Gram-negative bacteria, conjugation is mediated by a large transport apparatus-the conjugative type IV secretion system (T4SS)-produced by the donor cell and embedded in both its outer and inner membranes. The T4SS also elaborates a long extracellular filament-the conjugative pilus-that is essential for DNA transfer4,5. Here we present a high-resolution cryo-electron microscopy (cryo-EM) structure of a 2.8 megadalton T4SS complex composed of 92 polypeptides representing 8 of the 10 essential T4SS components involved in pilus biogenesis. We added the two remaining components to the structural model using co-evolution analysis of protein interfaces, to enable the reconstitution of the entire system including the pilus. This structure describes the exceptionally large protein-protein interaction network required to assemble the many components that constitute a T4SS and provides insights on the unique mechanism by which they elaborate pili.
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