周质间隙
分泌物
细菌外膜
单元格信封
VI型分泌系统
内膜
转运蛋白
分泌蛋白
生物
细胞生物学
膜转运蛋白
大肠杆菌
计算生物学
膜蛋白
化学
生物化学
毒力
膜
基因
作者
Freya J Hodges,Von Vergel L Torres,Adam F. Cunningham,Ian R. Henderson,Christopher Icke
出处
期刊:Advances in Microbial Physiology
日期:2022-12-05
卷期号:: 155-204
被引量:7
标识
DOI:10.1016/bs.ampbs.2022.10.003
摘要
Type I secretion systems (T1SS) are versatile molecular machines for protein transport across the Gram-negative cell envelope. The archetypal Type I system mediates secretion of the Escherichia coli hemolysin, HlyA. This system has remained the pre-eminent model of T1SS research since its discovery. The classic description of a T1SS is composed of three proteins: an inner membrane ABC transporter, a periplasmic adaptor protein and an outer membrane factor. According to this model, these components assemble to form a continuous channel across the cell envelope, an unfolded substrate molecule is then transported in a one-step mechanism, directly from the cytosol to the extracellular milieu. However, this model does not encapsulate the diversity of T1SS that have been characterized to date. In this review, we provide an updated definition of a T1SS, and propose the subdivision of this system into five subgroups. These subgroups are categorized as T1SSa for RTX proteins, T1SSb for non-RTX Ca2+-binding proteins, T1SSc for non-RTX proteins, T1SSd for class II microcins, and T1SSe for lipoprotein secretion. Although often overlooked in the literature, these alternative mechanisms of Type I protein secretion offer many avenues for biotechnological discovery and application.
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