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Building a secreting nanomachine: a structural overview of the T3SS§

机译:构建秘密的纳米机器:T3SS的结构概述

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摘要

To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble macromolecular nanomachines. One such nanodevice, the type III secretion system (T3SS), has evolved to provide a means of transporting proteins from the bacterial cytoplasm across the periplasmic and extracellular spaces. T3SS can be broadly classified into two highly homologous families: the flagellar T3SS which drive cell motility, and the non-flagellar T3SS (NFT3SS) that inject effector proteins into eukaryotic host cells, a trait frequently associated with virulence. Although the structures and symmetries of ancillary components of the T3SS have diversified to match requirements of different species adapted to different niches, recent genetic, molecular and structural studies demonstrate that these systems are built by arranging homologous modular protein assemblies.
机译:为了完成复杂的生物学任务,例如运动和蛋白质易位,细菌组装了大分子纳米机器。一种这样的纳米装置,即III型分泌系统(T3SS),已经进化为提供一种从细菌细胞质跨周质和细胞外空间转运蛋白的手段。 T3SS大致可分为两个高度同源的家族:驱动细胞运动的鞭毛T3SS和将效应子蛋白注入真核宿主细胞的非鞭毛T3SS(NFT3SS),这种特征通常与毒力相关。尽管T3SS的辅助成分的结构和对称性已经多样化,以适应适应不同生态位的不同物种的需求,但最近的遗传,分子和结构研究表明,这些系统是通过安排同源模块蛋白装配体构建的。

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