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人巨细胞病毒UL116糖蛋白是一种伴侣蛋白,可控制病毒粒子上基于gH的复合物水平。

The Human Cytomegalovirus UL116 Glycoprotein Is a Chaperone to Control gH-Based Complexes Levels on Virions.

作者信息

Vezzani Giacomo, Amendola Diego, Yu Dong, Chandramouli Sumana, Frigimelica Elisabetta, Maione Domenico, Merola Marcello

机构信息

GSK, Siena, Italy.

Department of Pharmacy and Biotechnology (FABIT), University of Bologna, Bologna, Italy.

出版信息

Front Microbiol. 2021 Apr 6;12:630121. doi: 10.3389/fmicb.2021.630121. eCollection 2021.

Abstract

Human cytomegalovirus (HCMV) relies in large part upon the viral membrane fusion glycoprotein B and two alternative gH/gL complexes, gH/gL/gO (Trimer) and gH/gL/UL128/UL130/UL131A (Pentamer) to enter into cells. The relative amounts of Trimer and Pentamer vary among HCMV strains and contribute to differences in cell tropism. Although the viral ER resident protein UL148 has been shown to interact with gH to facilitate gO incorporation, the mechanisms that favor the assembly and maturation of one complex over another remain poorly understood. HCMV virions also contain an alternative non-disulfide bound heterodimer comprised of gH and UL116 whose function remains unknown. Here, we show that disruption of HCMV gene causes infectivity defects of ∼10-fold relative to wild-type virus and leads to reduced expression of both gH/gL complexes in virions. Furthermore, gH that is not covalently bound to other viral glycoproteins, which are readily detected in wild-type HCMV virions, become undetectable in the absence of suggesting that the gH/UL116 complex is abundant in virions. We find evidence that UL116 and UL148 interact during infection indicating that the two proteins might cooperate to regulate the abundance of HCMV gH complexes. Altogether, these results are consistent with a role of UL116 as a chaperone for gH during the assembly and maturation of gH complexes in infected cells.

摘要

人巨细胞病毒(HCMV)在很大程度上依赖病毒膜融合糖蛋白B以及两种替代的gH/gL复合物,即gH/gL/gO(三聚体)和gH/gL/UL128/UL130/UL131A(五聚体)进入细胞。三聚体和五聚体的相对含量在不同的HCMV毒株中有所不同,并导致细胞嗜性的差异。尽管病毒内质网驻留蛋白UL148已被证明与gH相互作用以促进gO的掺入,但有利于一种复合物而非另一种复合物组装和成熟的机制仍知之甚少。HCMV病毒粒子还包含一种由gH和UL116组成的替代的非二硫键结合异二聚体,其功能尚不清楚。在这里,我们表明破坏HCMV基因会导致相对于野生型病毒约10倍的感染性缺陷,并导致病毒粒子中两种gH/gL复合物的表达降低。此外,在野生型HCMV病毒粒子中易于检测到的未与其他病毒糖蛋白共价结合的gH,在不存在该基因时变得无法检测到,这表明gH/UL116复合物在病毒粒子中含量丰富。我们发现有证据表明UL116和UL148在感染过程中相互作用,这表明这两种蛋白可能协同调节HCMV gH复合物的丰度。总之,这些结果与UL116在感染细胞中gH复合物组装和成熟过程中作为gH的伴侣蛋白的作用一致。

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