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Structural basis for the recognition and degradation of host TRIM proteins by Salmonella effector SopA

机译:通过沙门氏菌的宿主修剪蛋白质识别和降解的结构基础效应SOPA

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The hallmark of Salmonella Typhimurium infection is an acute intestinal inflammatory response, which is mediated through the action of secreted bacterial effector proteins. The pro-inflammatory Salmonella effector SopA is a HECT-like E3 ligase, which was previously proposed to activate host RING ligases TRIM56 and TRIM65. Here we elucidate an inhibitory mechanism of TRIM56 and TRIM65 targeting by SopA. We present the crystal structure of SopA in complex with the RING domain of human TRIM56, revealing the atomic details of their interaction and the basis for SopA selectivity towards TRIM56 and TRIM65. Structure-guided biochemical analysis shows that SopA inhibits TRIM56 E3 ligase activity by occluding the E2-interacting surface of TRIM56. We further demonstrate that SopA ubiquitinates TRIM56 and TRIM65, resulting in their proteasomal degradation during infection. Our results provide the basis for how a bacterial HECT ligase blocks host RING ligases and exemplifies the multivalent power of bacterial effectors during infection.
机译:沙门氏菌梗死感染的标志是急性肠道炎症反应,其通过分泌细菌效应蛋白的作用来介导。促炎沙门氏菌效应器SOPA是一种像样的E3连接酶,先前提出用于激活宿主环形连接件TRIM56和TRIM65。在这里,我们阐明了SOPA靶向TRIM56和TRIM65的抑制机制。我们将SOPA的晶体结构与人磨削的环形结构域呈现物,揭示了它们的相互作用的原子细节和对TRIM56和TRIM65的SOPA选择性的基础。结构引导的生物化学分析表明,通过封闭Trim56的E2相互作用表面抑制SOPA抑制TRIM56 E3连接酶活性。我们进一步证明了SOPA ubiquitinate Trim56和Trim65,导致感染期间的蛋白酶体降解。我们的结果为细菌份旋塞块封闭宿主环形连接的基础提供了基础,并在感染期间举例说明细菌效应器的多价功率。

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