首页> 外文OA文献 >The U95 Protein of Human Herpesvirus 6B Interacts with Human GRIM-19: Silencing of U95 Expression Reduces Viral Load and Abrogates Loss of Mitochondrial Membrane Potential▿
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The U95 Protein of Human Herpesvirus 6B Interacts with Human GRIM-19: Silencing of U95 Expression Reduces Viral Load and Abrogates Loss of Mitochondrial Membrane Potential▿

机译:人疱疹病毒6B的U95蛋白与人GRIM-19相互作用:U95表达的沉默可降低病毒载量并减少线粒体膜电位的丧失▿

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摘要

To better understand the pathogenesis of human herpesvirus 6 (HHV-6), it is important to elucidate the functional aspects of immediate-early (IE) genes at the initial phase of the infection. To study the functional role of the HHV-6B IE gene encoding U95, we generated a U95-Myc fusion protein and screened a pretransformed bone marrow cDNA library for U95-interacting proteins, using yeast-two hybrid analysis. The most frequently appearing U95-interacting protein identified was GRIM-19, which belongs to the family of genes associated with retinoid-interferon mortality and serves as an essential component of the oxidative phosphorylation system. This interaction was verified by both coimmunoprecipitation and confocal microscopic coimmunolocalization. Short-term HHV-6B infection of MT-4 T-lymphocytic cells induced syncytial formation, resulted in decreased mitochondrial membrane potential, and led to progressively pronounced ultrastructural changes, such as mitochondrial swelling, myelin-like figures, and a loss of cristae. Compared to controls, RNA interference against U95 effectively reduced the U95 mRNA copy number and abrogated the loss of mitochondrial membrane potential. Our results indicate that the high affinity between U95 early viral protein and GRIM-19 may be closely linked to the detrimental effect of HHV-6B infection on mitochondria. These findings may explain the alternative cell death mechanism of expiration, as opposed to apoptosis, observed in certain productively HHV-6B-infected cells. The interaction between U95 and GRIM-19 is thus functionally and metabolically significant in HHV-6B-infected cells and may be a means through which HHV-6B modulates cell death signals by interferon and retinoic acid.
机译:为了更好地了解人类疱疹病毒6(HHV-6)的发病机理,重要的是阐明感染初期的即早(IE)基因的功能方面。为了研究编码U95的HHV-6B IE基因的功能作用,我们使用酵母-两个杂交分析方法生成了U95-Myc融合蛋白,并筛选了与U95相互作用的蛋白的预转化骨髓cDNA文库。鉴定出的最常出现的与U95相互作用的蛋白是GRIM-19,它属于与类维生素A干扰素死亡率相关的基因家族,并且是氧化磷酸化系统的重要组成部分。共免疫沉淀和共聚焦显微镜共免疫定位证实了这种相互作用。 MT-4 T淋巴细胞的短期HHV-6B感染诱导合胞体形成,导致线粒体膜电位降低,并导致逐渐显着的超微结构变化,例如线粒体肿胀,髓鞘样数字和ista骨丧失。与对照相比,针对U95的RNA干扰有效地减少了U95 mRNA的拷贝数,并消除了线粒体膜电位的丧失。我们的结果表明,U95早期病毒蛋白与GRIM-19之间的高亲和力可能与HHV-6B感染对线粒体的有害作用密切相关。这些发现可能解释了在某些生产性HHV-6B感染的细胞中观察到的与细胞凋亡相反的其他细胞死亡死亡机制。因此,U95和GRIM-19之间的相互作用在HHV-6B感染的细胞中在功能上和代谢上都很重要,并且可能是HHV-6B通过干扰素和视黄酸调节细胞死亡信号的一种手段。

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