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Herpes simplex virus 1 infection dampens the immediate early antiviral innate immunity signaling from peroxisomes by tegument protein VP16

机译:单纯疱疹病毒1感染通过皮膜蛋白VP16抑制了过氧化物酶体的早期早期抗病毒先天免疫信号

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Background Herpes simplex virus 1 (HSV-1) is an archetypal member of the alphaherpesvirus subfamily with a large genome encoding over 80 proteins, many of which play a critical role in virus-host interactions and immune modulation. Upon viral infections, the host cells activate innate immune responses to restrict their replications. Peroxisomes, which have long been defined to regulate metabolic activities, are reported to be important signaling platforms for antiviral innate immunity. It has been verified that signaling from peroxisomal MAVS (MAVS-Pex) triggers a rapid interferon (IFN) independent IFN-stimulated genes (ISGs) production against invading pathogens. However, little is known about the interaction between DNA viruses such as HSV-1 and the MAVS-Pex mediated signaling. Results HSV-1 could activate the MAVS-Pex signaling pathway at a low multiplicity of infection (MOI), while infection at a high MOI dampens MAVS-Pex induced immediately early ISGs production. A high-throughput screen assay reveals that HSV-1 tegument protein VP16 inhibits the immediate early ISGs expression downstream of MAVS-Pex signaling. Moreover, the expression of ISGs was recovered when VP16 was knockdown with its specific short hairpin RNA. Conclusion HSV-1 blocks MAVS-Pex mediated early ISGs production through VP16 to dampen the immediate early antiviral innate immunity signaling from peroxisomes.
机译:背景单纯疱疹病毒1(HSV-1)是alphaherpesvirus亚科的原型成员,具有编码80多种蛋白质的大型基因组,其中许多在病毒-宿主相互作用和免疫调节中起关键作用。病毒感染后,宿主细胞激活先天性免疫反应以限制其复制。据报道,过氧化物酶体长期以来被定义为调节代谢活动,是抗病毒先天免疫的重要信号平台。已经证实,来自过氧化物酶体MAVS(MAVS-Pex)的信号触发了针对入侵病原体的快速干扰素(IFN)独立的IFN刺激基因(ISG)的产生。但是,人们对诸如HSV-1的DNA病毒与MAVS-Pex介导的信号传导之间的相互作用了解甚少。结果HSV-1可以在低感染复数(MOI)下激活MAVS-Pex信号通路,而在高MOI感染下会抑制MAVS-Pex立即诱导早期ISGs产生。高通量筛选分析表明,HSV-1皮膜蛋白VP16抑制了MAVS-Pex信号下游的立即早期ISGs表达。此外,当用特异性短发夹RNA敲低VP16时,ISG的表达得以恢复。结论HSV-1通过VP16阻断MAVS-Pex介导的早期ISG产生,从而抑制过氧化物酶体的立即早期抗病毒先天免疫信号。

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