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人bcl-2在CD4 + T细胞中的强制表达增强了人类疱疹病毒7的复制及细胞病变效应的诱导。

Enforced expression of human bcl-2 in CD4+ T cells enhances human herpesvirus 7 replication and induction of cytopathic effects.

作者信息

Secchiero P, Bertolaso L, Gibellini D, Ricci D, Bemis K, Capitani S, Gallo R C, Zauli G

机构信息

Institute of Human Anatomy, University of Ferrara, Italy.

出版信息

Eur J Immunol. 1998 May;28(5):1587-96. doi: 10.1002/(SICI)1521-4141(199805)28:05<1587::AID-IMMU1587>3.0.CO;2-#.

Abstract

The cytopathic effects (CPE) resulting from the infection of CD4+ T cells by human herpes-virus 7 (HHV-7) comprises two major mechanisms: generation of large polyploid cells, which eventually undergo necrotic lysis, and apoptosis, predominantly occurring in small mononucleated cells. To dissect the relative contribution of these two phenomena to the overall cytopathicity of HHV-7 in vitro, we have investigated the effect of acute HHV-7 infection on SupT1 CD4+ T cell lines stably transfected either with the bcl-2 anti-apoptotic gene or with the control vector. Overexpression of Bcl-2 protein by these cells was associated with a progressive decline of the total number of viable cells, and a relative increase of enlarged polyploid cell. Of note, the size of polyploid cells was significantly greater in SupT1 cells overexpressing bcl-2 than in cells transfected with the control vector. In addition, bcl-2 expression accelerated the kinetics of an acute spreading of HHV-7 infection, as determined by HHV-7-specific indirect immunostaining revealed by either fluorescence microscopy or flow cytometry. Our results indicate that inhibition of apoptosis in HHV-7-infected cultures greatly favors the process of polyploidization and represents a major mechanism to maximize viral transmission.

摘要

人疱疹病毒7型(HHV-7)感染CD4+ T细胞所产生的细胞病变效应(CPE)包括两种主要机制:产生大型多倍体细胞,最终这些细胞会发生坏死性溶解;以及凋亡,主要发生在小型单核细胞中。为了剖析这两种现象对HHV-7体外整体细胞致病性的相对贡献,我们研究了急性HHV-7感染对稳定转染了bcl-2抗凋亡基因或对照载体的SupT1 CD4+ T细胞系的影响。这些细胞中Bcl-2蛋白的过表达与活细胞总数的逐渐下降以及增大的多倍体细胞的相对增加有关。值得注意的是,过表达bcl-2的SupT1细胞中多倍体细胞的大小明显大于转染对照载体的细胞。此外,如通过荧光显微镜或流式细胞术所揭示的HHV-7特异性间接免疫染色所确定的,bcl-2表达加速了HHV-7感染急性传播的动力学。我们的结果表明,在HHV-7感染的培养物中抑制凋亡极大地促进了多倍体化过程,并且是使病毒传播最大化的主要机制。

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