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Intracellular Kaposis Sarcoma-Associated Herpesvirus Load Determines Early Loss of Immune Synapse Components

机译:细胞内卡波西氏肉瘤相关疱疹病毒载量确定免疫突触组件的早期丢失。

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摘要

Lifelong infection is a hallmark of all herpesviruses, and their survival depends on countering host immune defenses. The human gammaherpesvirus Kaposi's sarcoma-associated herpesvirus (KSHV) encodes an array of proteins that contribute to immune evasion, including modulator of immune recognition 2 (MIR2), an E3 ubiquitin ligase. Exogenously expressed MIR2 downregulates the surface expression of several immune synapse proteins, including major histocompatibility complex (MHC) class 1, ICAM-1 (CD54), and PECAM (CD31). Although immunofluorescence assays detect this lytic gene in only 1 to 5% of cells within infected cultures, we have found that de novo infection of naive cells leads to the downregulation of these immune synapse components in a major proportion of the population. Investigating the possibility that low levels of MIR2 are responsible for this downregulation in the context of viral infection, we found that MIR2 transduction recapitulated the patterns of surface downregulation following de novo infection and that both MIR2 promoter activation, MIR2 expression level, and immune synapse component downregulation were proportional to the concentration of KSHV added to the culture. Additionally, MIR2-specific small interfering RNA reversed the downregulation effects. Finally, using a sensitive, high-throughput assay to detect levels of the virus in individual cells, we also observed that downregulation of MHC class I and ICAM-1 correlated with intracellular viral load. Together, these results suggest that the effects of MIR2 are gene dosage dependent and that low levels of this viral protein contribute to the widespread downregulation of immune-modulating cell surface proteins during the initial stages of KSHV infection.
机译:终身感染是所有疱疹病毒的标志,其存活取决于对抗宿主的免疫防御。人伽马疱疹病毒卡波济氏肉瘤相关疱疹病毒(KSHV)编码一系列有助于逃避免疫的蛋白质,包括E3泛素连接酶免疫识别2(MIR2)的调节剂。外源表达的MIR2下调了几种免疫突触蛋白的表面表达,包括主要的组织相容性复合体(MHC)1类,ICAM-1(CD54)和PECAM(CD31)。尽管免疫荧光分析仅在感染培养物中1至5%的细胞中检测到该裂解基因,但我们发现从头感染原始细胞会导致大部分人群中这些免疫突触成分的下调。研究了在病毒感染的情况下低水平的MIR2引起这种下调的可能性,我们发现MIR2转导概括了从头感染后表面下调的模式,并且MIR2启动子激活,MIR2表达水平和免疫突触成分下调与添加到培养物中的KSHV浓度成正比。此外,MIR2特异性小干扰RNA逆转了下调作用。最后,使用灵敏,高通量的检测方法检测单个细胞中病毒的水平,我们还观察到MHC I类和ICAM-1的下调与细胞内病毒载量相关。在一起,这些结果表明,MIR2的影响是基因剂量依赖性的,并且该病毒蛋白的低水平有助于在KSHV感染的初始阶段广泛地下调免疫调节细胞表面蛋白。

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