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Type III protein secretion systems in plant and animal pathogenic bacteria.

机译:动植物病原细菌中的III型蛋白质分泌系统。

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摘要

Among many interesting and sophisticated mechanisms used by bacterial pathogens to subvert eukaryotic hosts is a class of specialized protein secretion systems (known as type III protein secretion systems) that deliver bacterial virulence proteins directly into the host cell. Recent studies have revealed 4 important features of these secretion systems. First, they are widespread among plant and animal bacterial pathogens, and mutations affecting type III protein secretion often eliminate bacterialvirulence completely. Second, at least 8 type III secretion components share sequence similarities with those of the flagellar assembly machinery and flagellum-like structures are associated with type III secretion, raising the possibility that these secretion systems are derived from the presumably more ancient flagellar assembly apparatus. Third, type III secretion is activated in vivo upon contact with host cells. Fourth, the type III secretion mechanism is Sec-independent and the effector proteins may possess mRNA-based targeting signals. This review highlights the similarities and differences among type III secretion systems of selected model plant and animal pathogenic bacteria.
机译:细菌病原体用来破坏真核宿主的许多有趣而复杂的机制中,有一类是专门的蛋白质分泌系统(称为III型蛋白质分泌系统),可将细菌毒力蛋白直接传递到宿主细胞中。最近的研究揭示了这些分泌系统的四个重要特征。首先,它们广泛存在于动植物细菌病原体中,影响III型蛋白质分泌的突变通常会完全消除细菌毒力。其次,至少有8种III型分泌成分与鞭毛装配机械的序列相似,鞭毛状结构与III型分泌相关,这增加了这些分泌系统源自推测较古老的鞭毛装配设备的可能性。第三,III型分泌物在与宿主细胞接触后在体内被激活。第四,III型分泌机制独立于Sec,效应蛋白可能具有基于mRNA的靶向信号。这篇综述强调了选定的模型植物和动物病原细菌的III型分泌系统之间的异同。

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