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首页> 外文期刊>Infection and immunity >Domains of the Shigella flexneri Type III Secretion System IpaB Protein Involved in Secretion Regulation
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Domains of the Shigella flexneri Type III Secretion System IpaB Protein Involved in Secretion Regulation

机译:弗氏志贺氏菌III型分泌系统IpaB蛋白的域参与分泌调控

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Type III secretion systems (T3SSs) are key determinants of virulence in many Gram-negative bacterial pathogens. Upon cell contact, they inject effector proteins directly into eukaryotic cells through a needle protruding from the bacterial surface. Host cell sensing occurs through a distal needle “tip complex,” but how this occurs is not understood. The tip complex of quiescent needles is composed of IpaD, which is topped by IpaB. Physical contact with host cells initiates secretion and leads to assembly of a pore, formed by IpaB and IpaC, in the host cell membrane, through which other virulence effector proteins may be translocated. IpaB is required for regulation of secretion and may be the host cell sensor. It binds needles via its extreme C-terminal coiled coil, thereby likely positioning a large domain containing its hydrophobic regions at the distal tips of needles. In this study, we used short deletion mutants within this domain to search for regions of IpaB involved in secretion regulation. This identified two regions, amino acids 227 to 236 and 297 to 306, the presence of which are required for maintenance of IpaB at the needle tip, secretion regulation, and normal pore formation but not invasion. We therefore propose that removal of either of these regions leads to an inability to block secretion prior to reception of the activation signal and/or a defect in host cell sensing.
机译:III型分泌系统(T3SS)是许多革兰氏阴性细菌病原体中毒力的关键决定因素。细胞接触后,它们通过从细菌表面突出的针将效应蛋白直接注入真核细胞。宿主细胞感测是通过远侧针头“尖端复合体”发生的,但这种情况是如何发生的尚不清楚。静态针的尖端复合体由IpaD组成,其顶部是IpaB。与宿主细胞的物理接触会启动分泌,并导致由IpaB和​​IpaC形成的孔在宿主细胞膜中聚集,其他毒力效应蛋白可通过该孔转移。 IpaB是分泌调节所必需的,可能是宿主细胞传感器。它通过其极端的C端线圈盘绕针,从而可能将包含其疏水区域的大区域定位在针的远端。在这项研究中,我们使用该域内的短缺失突变体来搜索参与分泌调节的IpaB区域。这确定了两个区域,氨基酸227至236和297至306,维持针尖处的IpaB,分泌调节和正常的孔形成而不是侵袭需要氨基酸的存在。因此,我们建议去除这些区域中的任何一个导致在接收激活信号之前无法阻止分泌和/或宿主细胞感测中的缺陷。

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