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Genetic Dissection of the Signaling Cascade that Controls Activation of the Shigella Type III Secretion System from the Needle Tip

机译:信号叶栅的遗传解剖从针尖控制志贺氏菌III型分泌系统的激活

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摘要

Many Gram-negative bacterial pathogens use type III secretion systems (T3SSs) for virulence. The Shigella T3SS consists of a hollow needle, made of MxiH and protruding from the bacterial surface, anchored in both bacterial membranes by multimeric protein rings. Atop the needle lies the tip complex (TC), formed by IpaD and IpaB. Upon physical contact with eukaryotic host cells, T3S is initiated leading to formation of a pore in the eukaryotic cell membrane, which is made of IpaB and IpaC. Through the needle and pore channels, further bacterial proteins are translocated inside the host cell to meditate its invasion. IpaD and the needle are implicated in transduction of the host cell-sensing signal to the T3S apparatus. Furthermore, the sensing-competent TC seems formed of 4 IpaDs topped by 1 IpaB. However, nothing further is known about the activation process. To investigate IpaB’s role during T3SS activation, we isolated secretion-deregulated IpaB mutants using random mutagenesis and a genetic screen. We found ipaB point mutations in leading to defects in secretion activation, which sometimes diminished pore insertion and host cell invasion. We also demonstrated IpaB communicates intramolecularly and intermolecularly with IpaD and MxiH within the TC because mutations affecting these interactions impair signal transduction.
机译:许多革兰氏阴性细菌病原体使用III型分泌系统(T3SS)进行毒性处理。志贺氏菌T3SS由MxiH制成的空心针组成,该空心针从细菌表面突出,并通过多聚蛋白环固定在两个细菌膜中。针顶上是由IpaD和IpaB形成的尖端复合体(TC)。与真核宿主细胞发生物理接触后,T3S启动,导致在真核细胞膜中形成孔,该孔由IpaB和​​IpaC制成。通过针和孔通道,其他细菌蛋白在宿主细胞内移位,以冥想其入侵。 IpaD和针头与宿主细胞感测信号到T3S装置的转导有关。此外,具有感应能力的TC似乎由4个IpaD加上1个IpaB组成。但是,关于激活过程没有更多的了解。为了研究IpaB在T3SS激活过程中的作用,我们使用随机诱变和遗传筛选分离了分泌失活的IpaB突变体。我们发现ipaB点突变导致分泌激活缺陷,有时会减少毛孔插入和宿主细胞入侵。我们还证明了IpaB在TC中与IpaD和MxiH进行分子内和分子间通讯,因为影响这些相互作用的突变会削弱信号转导。

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