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Mycolactone subverts immunity by selectively blocking the Sec61 translocon

机译:Mycolactone通过选择性阻断Sec61转运子来破坏免疫力

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摘要

Mycolactone, an immunosuppressive macrolide released by the human pathogen Mycobacterium ulcerans, was previously shown to impair Sec61-dependent protein translocation, but the underlying molecular mechanism was not identified. In this study, we show that mycolactone directly targets the α subunit of the Sec61 translocon to block the production of secreted and integral membrane proteins with high potency. We identify a single–amino acid mutation conferring resistance to mycolactone, which localizes its interaction site near the lumenal plug of Sec61α. Quantitative proteomics reveals that during T cell activation, mycolactone-mediated Sec61 blockade affects a selective subset of secretory proteins including key signal-transmitting receptors and adhesion molecules. Expression of mutant Sec61α in mycolactone-treated T cells rescued their homing potential and effector functions. Furthermore, when expressed in macrophages, the mycolactone-resistant mutant restored IFN-γ receptor–mediated antimicrobial responses. Thus, our data provide definitive genetic evidence that Sec61 is the host receptor mediating the diverse immunomodulatory effects of mycolactone and identify Sec61 as a novel regulator of immune cell functions.
机译:Mycolactone是由人类病原体溃疡分枝杆菌释放的一种免疫抑制性大环内酯,先前已显示出它会损害Sec61依赖的蛋白易位,但尚未发现潜在的分子机制。在这项研究中,我们表明Mycolactone直接靶向Sec61 translocon的α亚基,以高效率阻断分泌和整合膜蛋白的产生。我们确定了一个单氨基酸突变,赋予了对甲基内酯的抗性,该突变将其相互作用位点定位在Sec61α的腔塞附近。定量蛋白质组学揭示了在T细胞活化过程中,myactactone介导的Sec61阻断作用影响分泌蛋白的选择性子集,包括关键信号传递受体和粘附分子。突变的Sec61α在经霉固酮处理的T细胞中的表达挽救了它们的归巢潜力和效应子功能。此外,当在巨噬细胞中表达时,耐霉菌内酯的突变体可恢复IFN-γ受体介导的抗菌反应。因此,我们的数据提供了确定的遗传学证据,表明Sec61是宿主受体,介导mycolactone的多种免疫调节作用,并确定Sec61是免疫细胞功能的新型调节剂。

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