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A Leucine Zipper Motif of a Tegument Protein Triggers Final Envelopment of Human Cytomegalovirus

机译:韧皮蛋白的亮氨酸拉链基序触发人巨细胞病毒的最终包膜

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摘要

The product of the human cytomegalovirus (HCMV) UL71 gene is conserved throughout the herpesvirus family. During HCMV infection, protein pUL71 is required for efficient virion egress and is involved in the final steps of secondary envelopment leading to infectious viral particles. We found strong indications for oligomerization of pUL71 under native conditions when recombinant pUL71 was negatively stained and analyzed by electron microscopy. Oligomerization of pUL71 during infection was further verified by native and reducing polyacrylamide gel electrophoresis (PAGE). By in silico analyses of the pUL71 sequence, we noticed a basic leucine zipper (bZIP)-like domain, which might serve as an oligomerization domain. We demonstrated the requirement of the bZIP-like domain for pUL71 oligomerization by coimmunoprecipitation and bimolecular fluorescence complementation using a panel of pUL71 mutants. These studies revealed that the mutation of two leucine residues is sufficient to abrogate oligomerization but that intracellular localization of pUL71 was unaffected. To investigate the relevance of the bZIP domain in the viral context, recombinant viruses carrying mutations identical to those in the panel of pUL71 mutants were generated. bZIP-defective viral mutants showed impaired viral growth, a small-plaque phenotype, and an ultrastructural phenotype similar to that of the previously described UL71 stop mutant virus. The majority of virus particles within the viral assembly compartment exhibited various stages of incomplete envelopment, which is consistent with the growth defect for the bZIP mutants. From these data we conclude that the bZIP-like domain is required for oligomerization of pUL71, which seems to be essential for correct envelopment of HCMV.
机译:人类巨细胞病毒(HCMV)UL71基因的产物在整个疱疹病毒家族中都是保守的。在HCMV感染期间,蛋白pUL71是有效的病毒体排出所必需的,并参与导致病毒颗粒感染的次级包膜的最终步骤。当重组pUL71阴性染色并通过电子显微镜分析时,我们发现在自然条件下pUL71寡聚的强烈迹象。通过天然和还原性聚丙烯酰胺凝胶电泳(PAGE)进一步验证了感染期间pUL71的低聚。通过对pUL71序列的计算机分析,我们注意到了一个基本的亮氨酸拉链(bZIP)样结构域,它可能充当寡聚化结构域。我们通过使用一组pUL71突变体通过共免疫沉淀和双分子荧光互补展示了bZIP样结构域对pUL71寡聚化的要求。这些研究表明,两个亮氨酸残基的突变足以消除寡聚,但pUL71的细胞内定位不受影响。为了研究bZIP结构域在病毒环境中的相关性,产生了携带与pUL71突变体面板相同突变的重组病毒。与以前描述的UL71终止突变病毒相似,bZIP缺陷型病毒突变体显示出病毒生长受损,小噬斑表型和超微结构表型。病毒装配区室中的大多数病毒颗粒表现出不完全包封的各个阶段,这与bZIP突变体的生长缺陷一致。根据这些数据,我们得出结论,pUL71的寡聚化需要bZIP样结构域,这对于正确封装HCMV至关重要。

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