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The Yersinia pestis type III secretion system: expression, assembly and role in the evasion of host defenses

机译:鼠疫耶尔森氏菌III型分泌系统:在逃避宿主防御中的表达,组装和作用

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摘要

Yersinia pestis, the etiologic agent of plague, utilizes a type III secretion system (T3SS) to subvert the defenses of its mammalian hosts. T3SSs are complex nanomachines that allow bacterial pathogens to directly inject effector proteins into eukaryotic cells. The Y. pestis T3SS is not expressed during transit through the flea vector, but T3SS gene expression is rapidly thermoinduced upon entry into a mammalian host. Assembly of the T3S apparatus is a highly coordinated process that requires the homo- and hetero-oligomerization over 20 Yersinia secretion (Ysc) proteins, several assembly intermediates and the T3S process to complete the assembly of the rod and external needle structures. The activation of effector secretion is controlled by the YopN/TyeA/SycN/YscB complex, YscF and LcrG in response to extracellular calcium and/or contact with a eukaryotic cell. Cell contact triggers the T3S process including the secretion and assembly of a pore-forming translocon complex that facilitates the translocation of effector proteins, termed Yersinia outer proteins (Yops), across the eukaryotic membrane. Within the host cell, the Yop effector proteins function to inhibit bacterial phagocytosis and to suppress the production of pro-inflammatory cytokines.
机译:鼠疫耶尔森菌是鼠疫的病原体,它利用III型分泌系统(T3SS)破坏了其哺乳动物宿主的防御能力。 T3SS是复杂的纳米机器,可让细菌病原体将效应蛋白直接注入真核细胞。鼠疫耶尔森氏菌T3SS在通过跳蚤载体转运过程中未表达,但进入哺乳动物宿主后,T3SS基因表达迅速被热诱导。 T3S装置的组装是高度协调的过程,需要20种耶尔森氏菌分泌(Ysc)蛋白质的均质和杂合低聚,几种组装中间体和T3S过程来完成杆和外部针头结构的组装。响应于细胞外钙和/或与真核细胞的接触,效应子分泌的激活受YopN / TyeA / SycN / YscB复合物,YscF和LcrG的控制。细胞接触触发了T3S过程,包括分泌和组装成孔的转运蛋白复合物,该复合物促进效应蛋白(称为耶尔森氏菌外蛋白(Yops))在真核细胞膜上的转运。在宿主细胞内,Yop效应蛋白起抑制细菌吞噬作用和抑制促炎性细胞因子产生的作用。

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