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首页> 外文期刊>Science Advances >PPM1G restricts innate immune signaling mediated by STING and MAVS and is hijacked by KSHV for immune evasion
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PPM1G restricts innate immune signaling mediated by STING and MAVS and is hijacked by KSHV for immune evasion

机译:PPM1G限制天生的免疫信号传导通过刺痛和MAV介导的,并被KSHV劫持免疫逃避

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The adaptor proteins, STING and MAVS, are components of critical pathogen-sensing pathways that induce innate immunity. Phosphorylation of either adaptor results in activation of the type I interferon pathway. How this phosphorylation is regulated and how it is manipulated by pathogens remain largely unknown. Here, we identified host protein phosphatase, Mgsup2+/sup/Mnsup2+/sup dependent 1G (PPM1G) as a negative regulator of innate immune pathways and showed that this host system is hijacked by Kaposi’s sarcoma-associated herpesvirus (KSHV). Mechanistically, KSHV tegument protein ORF33 interacts with STING/MAVS and enhances recruitment of PPM1G to dephosphorylate p-STING/p-MAVS for immunosuppression. Inhibition of PPM1G expression improves the antiviral response against both DNA and RNA viruses. Collectively, our study shows that PPM1G restricts both cytosolic DNA– and RNA–sensing pathways to naturally balance the intensity of the antiviral response. Manipulation of PPM1G by KSHV provides an important strategy for immune evasion.
机译:适配器蛋白质,刺痛和MAV,是诱导先天免疫的关键病原体传感途径的组分。适配器的磷酸化导致I型干扰素途径的活化。如何调节这种磷酸化,并且通过病原体操纵如何仍然很大程度上是未知的。这里,我们将宿主蛋白磷酸酶Mg 2 + / sup> / mn 2 + 依赖性1g(ppm1g)作为先天免疫途径的负调节剂,并显示出该主机系统被劫持由Kaposi的肉瘤相关的Herpesvirus(KSHV)。机械上,KSHV Tegument蛋白ORF33与刺/水道相互作用,并增强PPM1G的募集,以去磷酸盐的P-STING / P-MAV进行免疫抑制。对PPM1G表达的抑制改善了对DNA和RNA病毒的抗病毒反应。集体,我们的研究表明,PPM1G限制了细胞溶质DNA和RNA感测途径,以自然地平衡抗病毒反应的强度。 KSHV的PPM1G操纵为免疫逃避提供了重要的策略。

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