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HIV 感染与 HERV 表达:综述。

HIV infection and HERV expression: a review.

机构信息

Laboratory of Experimental Virology, Department of Medical Microbiology, Center for Infection and Immunity Amsterdam, Academic Medical Center of the University of Amsterdam, Meibergdreef 15, 1105 AZ Amsterdam, The Netherlands.

出版信息

Retrovirology. 2012 Jan 16;9:6. doi: 10.1186/1742-4690-9-6.

Abstract

The human genome contains multiple copies of retrovirus genomes known as endogenous retroviruses (ERVs) that have entered the germ-line at some point in evolution. Several of these proviruses have retained (partial) coding capacity, so that a number of viral proteins or even virus particles are expressed under various conditions. Human ERVs (HERVs) belong to the beta-, gamma-, or spuma- retrovirus groups. Endogenous delta- and lenti- viruses are notably absent in humans, although endogenous lentivirus genomes have been found in lower primates. Exogenous retroviruses that currently form a health threat to humans intriguingly belong to those absent groups. The best studied of the two infectious human retroviruses is the lentivirus human immunodeficiency virus (HIV) which has an overwhelming influence on its host by infecting cells of the immune system. One HIV-induced change is the induction of HERV transcription, often leading to induced HERV protein expression. This review will discuss the potential HIV-HERV interactions.Several studies have suggested that HERV proteins are unlikely to complement defective HIV virions, nor is HIV able to package HERV transcripts, probably due to low levels of sequence similarity. It is unclear whether the expression of HERVs has a negative, neutral, or positive influence on HIV-AIDS disease progression. A positive effect was recently reported by the specific expression of HERVs in chronically HIV-infected patients, which results in the presentation of HERV-derived peptides to CD8+ T-cells. These cytotoxic T-cells were not tolerant to HERV peptides, as would be expected for self-antigens, and consequently lysed the HIV-infected, HERV-presenting cells. This novel mechanism could control HIV replication and result in a low plasma viral load. The possibility of developing a vaccination strategy based on these HERV peptides will be discussed.

摘要

人类基因组包含多个逆转录病毒基因组,称为内源性逆转录病毒 (ERVs),它们在进化过程中的某个时刻进入了生殖系。其中一些前病毒保留了(部分)编码能力,因此在各种条件下都会表达一些病毒蛋白甚至病毒颗粒。人类内源性逆转录病毒 (HERVs) 属于β、γ或泡沫逆转录病毒群。人类中明显不存在内源性δ和慢病毒,但在低等灵长类动物中发现了内源性慢病毒基因组。目前对人类健康构成威胁的外源性逆转录病毒令人好奇地属于那些缺失的群体。两种具有传染性的人类逆转录病毒中研究最多的是慢病毒人类免疫缺陷病毒 (HIV),它通过感染免疫系统的细胞对宿主产生压倒性的影响。HIV 引起的一个变化是诱导 HERV 转录,通常导致诱导的 HERV 蛋白表达。这篇综述将讨论潜在的 HIV-HERV 相互作用。几项研究表明,HERV 蛋白不太可能补充有缺陷的 HIV 病毒颗粒,HIV 也无法包装 HERV 转录本,可能是由于序列相似性低。HERV 的表达是否对 HIV-AIDS 疾病进展产生负面影响、中性影响还是积极影响尚不清楚。最近的一项研究报告称,慢性 HIV 感染患者中 HERV 的特异性表达具有积极影响,导致 HERV 衍生肽呈递给 CD8+ T 细胞。这些细胞毒性 T 细胞对 HERV 肽没有耐受性,正如预期的自身抗原一样,因此裂解了感染 HIV 的、呈递 HERV 的细胞。这种新的机制可以控制 HIV 的复制,并导致低血浆病毒载量。将基于这些 HERV 肽开发疫苗策略的可能性将进行讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/476b/3311604/e5fd1066da4d/1742-4690-9-6-1.jpg

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