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CD147 Promotes Entry of Pentamer-Expressing Human Cytomegalovirus into Epithelial and Endothelial Cells

机译:CD147促进表达五聚体的人类巨细胞病毒进入上皮和内皮细胞

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摘要

ABSTRACT Human cytomegalovirus (HCMV) replicates in many diverse cell types in vivo , and entry into different cells involves distinct entry mechanisms and different envelope glycoproteins. HCMV glycoprotein gB is thought to act as the virus fusogen, apparently after being triggered by different gH/gL proteins that bind distinct cellular receptors or entry mediators. A trimer of gH/gL/gO is required for entry into all cell types, and entry into fibroblasts involves trimer binding to platelet-derived growth factor receptor alpha (PDGFRα). HCMV entry into biologically relevant epithelial and endothelial cells and monocyte-macrophages also requires a pentamer, gH/gL complexed with UL128, UL130, and UL131, and there is evidence that the pentamer binds unidentified receptors. We screened an epithelial cell cDNA library and identified the cell surface protein CD147, which increased entry of pentamer-expressing HCMV into HeLa cells but not entry of HCMV that lacked the pentamer. A panel of CD147-specific monoclonal antibodies inhibited HCMV entry into epithelial and endothelial cells, but not entry into fibroblasts. shRNA silencing of CD147 in endothelial cells inhibited HCMV entry but not entry into fibroblasts. CD147 colocalized with HCMV particles on cell surfaces and in endosomes. CD147 also promoted cell-cell fusion induced by expression of pentamer and gB in epithelial cells. However, soluble CD147 did not block HCMV entry and trimer and pentamer did not bind directly to CD147, supporting the hypothesis that CD147 acts indirectly through other proteins. CD147 represents the first HCMV entry mediator that specifically functions to promote entry of pentamer-expressing HCMV into epithelial and endothelial cells. IMPORTANCE Human cytomegalovirus infects nearly 80% of the world’s population and causes significant morbidity and mortality. The current method of treatment involves the use of antiviral agents that are prone to resistance and can be highly toxic to patients; currently, there is no vaccine against HCMV available. HCMV infections involve virus dissemination throughout the body, infecting a wide variety of tissues; however, the mechanism of spread is not well understood, particularly with regard to which cellular proteins are utilized by HCMV to establish infection. This report describes the characterization of a newly identified cellular molecule that affects HCMV entry into epithelial and endothelial cells. These results will lead to a better understanding of HCMV pathogenesis and have implications for the development of future therapeutics.
机译:摘要人巨细胞病毒(HCMV)在体内可在许多不同的细胞类型中复制,进入不同的细胞涉及不同的进入机制和不同的包膜糖蛋白。 HCMV糖蛋白gB被认为是病毒的融合剂,显然是由结合不同细胞受体或进入介体的不同gH / gL蛋白触发的。进入所有细胞类型都需要三聚体gH / gL / gO,进入成纤维细胞涉及三聚体与血小板衍生的生长因子受体α(PDGFRα)的结合。 HCMV进入生物学上相关的上皮和内皮细胞以及单核巨噬细胞也需要五聚体,与UL128,UL130和UL131复合的gH / gL,并且有证据表明五聚体结合了未鉴定的受体。我们筛选了上皮细胞cDNA文库,并鉴定了细胞表面蛋白CD147,该蛋白增加了表达五聚体的HCMV进入HeLa细胞的进入,但没有缺失五聚体的HCMV进入。一组CD147特异性单克隆抗体抑制HCMV进入上皮和内皮细胞,但不进入成纤维细胞。内皮细胞中CD147的shRNA沉默可抑制HCMV进入,但不能进入成纤维细胞。 CD147与HCMV颗粒在细胞表面和内体中共定位。 CD147还促进了五聚体和gB在上皮细胞中的表达诱导的细胞间融合。但是,可溶性CD147不会阻止HCMV进入,三聚体和五聚体不会直接与CD147结合,从而支持CD147通过其他蛋白质间接起作用的假设。 CD147代表第一个HCMV进入介体,其特异性发挥功能来促进表达五聚体的HCMV进入上皮和内皮细胞。重要信息人类巨细胞病毒感染了世界近80%的人口,并导致大量发病和死亡。当前的治疗方法包括使用容易产生抗药性并且对患者有剧毒的抗病毒药。当前,没有针对HCMV的疫苗。 HCMV感染涉及病毒在全身的传播,感染了各种各样的组织。然而,传播的机理还不是很清楚,特别是关于HCMV利用哪些细胞蛋白来建立感染。该报告描述了新鉴定的影响HCMV进入上皮和内皮细胞的细胞分子的表征。这些结果将导致人们对HCMV的发病机理有更好的了解,并对未来治疗方法的发展产生影响。

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