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Deciphering Interplay between Salmonella Invasion Effectors

机译:沙门氏菌入侵效应器之间的相互解释。

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摘要

Bacterial pathogens have evolved a specialized type III secretion system (T3SS) to translocate virulence effector proteins directly into eukaryotic target cells. Salmonellae deploy effectors that trigger localized actin reorganization to force their own entry into non-phagocytic host cells. Six effectors (SipC, SipA, SopE/2, SopB, SptP) can individually manipulate actin dynamics at the plasma membrane, which acts as a ‘signaling hub’ during Salmonella invasion. The extent of crosstalk between these spatially coincident effectors remains unknown. Here we describe trans and cis binary entry effector interplay (BENEFIT) screens that systematically examine functional associations between effectors following their delivery into the host cell. The results reveal extensive ordered synergistic and antagonistic relationships and their relative potency, and illuminate an unexpectedly sophisticated signaling network evolved through longstanding pathogen–host interaction.
机译:细菌病原体已经进化出一种特殊的III型分泌系统(T3SS),可将毒力效应蛋白直接转移到真核靶细胞中。沙门氏菌部署效应器,触发局部肌动蛋白重组,迫使其自身进入非吞噬宿主细胞。六个效应子(SipC,SipA,SopE / 2,SopB,SptP)可以分别操纵质膜上的肌动蛋白动力学,从而在沙门氏菌入侵期间充当“信号中枢”。这些空间一致的效应子之间的串扰程度仍然未知。在这里,我们描述了反式和顺式二进制进入效应子相互作用(BENEFIT)屏幕,系统地检查了将效应子递送到宿主细胞后的效应子之间的功能关联。结果揭示了广泛的有序的协同和拮抗关系及其相对效力,并阐明了通过长期的病原体-宿主相互作用而进化出的出乎意料的复杂信号网络。

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