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Identification of an unconventional E3 binding surface on the UbcH5 ∼ Ub conjugate recognized by a pathogenic bacterial E3 ligase.

机译:识别由病原性细菌E3连接酶识别的UbcH5〜Ub缀合物上的非常规E3结合表面。

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摘要

Gram-negative bacteria deliver a cadre of virulence factors directly into the cytoplasm of eukaryotic host cells to promote pathogenesis and/or commensalism. Recently, families of virulence proteins have been recognized that function as E3 Ubiquitin-ligases. How these bacterial ligases integrate into the ubiquitin (Ub) signaling pathways of the host and how they differ functionally from endogenous eukaryotic E3s is not known. Here we show that the bacterial E3 SspH2 from S. typhimurium selectively binds the human UbcH5 ∼ Ub conjugate recognizing regions of both UbcH5 and Ub subunits. The surface of the E2 UbcH5 involved in this interaction differs substantially from that defined for other E2/E3 complexes involving eukaryotic E3-ligases. In vitro, SspH2 directs the synthesis of K48-linked poly-Ub chains, suggesting that cellular protein targets of SspH2-catalyzed Ub transfer are destined for proteasomal destruction. Unexpectedly, we found that intermediates in SspH2-directed reactions are activated poly-Ub chains directly tethered to the UbcH5 active site (UbcH5 ∼ Ubn). Rapid generation of UbcH5 ∼ Ubn may allow for bacterially directed modification of eukaryotic target proteins with a completed poly-Ub chain, efficiently tagging host targets for destruction.
机译:革兰氏阴性细菌将大量毒力因子直接传递到真核宿主细胞的细胞质中,以促进发病机理和/或共鸣。近来,已经认识到毒力蛋白家族起E3泛素连接酶的作用。这些细菌连接酶如何整合到宿主的泛素(Ub)信号传导途径中,以及它们在功能上与内源性真核E3的区别尚不清楚。在这里我们显示了来自鼠伤寒沙门氏菌的细菌E3 SspH2选择性结合UbcH5和Ub亚基的人UbcH5〜Ub共轭物识别区域。参与这种相互作用的E2 UbcH5的表面与其他涉及真核E3连接酶的E2 / E3复合体所定义的表面有很大不同。在体外,SspH2指导K48连接的多Ub链的合成,这表明SspH2催化的Ub转移的细胞蛋白靶标注定要被蛋白酶体破坏。出乎意料的是,我们发现SspH2定向反应的中间体是直接连接到UbcH5活性位点(UbcH5〜Ubn)的活化多Ub链。 UbcH5〜Ubn的快速生成可能允许细菌通过完整的多Ub链对真核靶蛋白进行定向修饰,从而有效标记宿主靶标进行破坏。

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