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包膜重组:宿主基因组中塑造逆转录病毒多样性和进化的主要驱动力。

Envelope Recombination: A Major Driver in Shaping Retroviral Diversification and Evolution within the Host Genome.

作者信息

Chabukswar Saili, Grandi Nicole, Lin Liang-Tzung, Tramontano Enzo

机构信息

Laboratory of Molecular Virology, Department of Life and Environmental Sciences, University of Cagliari, 09042 Cagliari, Italy.

International Ph.D. Program in Medicine, College of Medicine, Taipei Medical University, Taipei 110, Taiwan.

出版信息

Viruses. 2023 Aug 31;15(9):1856. doi: 10.3390/v15091856.

Abstract

Endogenous retroviruses (ERVs) are integrated into host DNA as the result of ancient germ line infections, primarily by extinct exogenous retroviruses. Thus, vertebrates' genomes contain thousands of ERV copies, providing a "fossil" record for ancestral retroviral diversity and its evolution within the host genome. Like other retroviruses, the ERV proviral sequence consists of , , , and genes flanked by long terminal repeats (LTRs). Particularly, the gene encodes for the envelope proteins that initiate the infection process by binding to the host cellular receptor(s), causing membrane fusion. For this reason, a major element in understanding ERVs' evolutionary trajectory is the characterization of changes over time. Most of the studies dedicated to ERVs' have been aimed at finding an "actual" physiological or pathological function, while few of them have focused on how these genes were once acquired and modified within the host. Once acquired into the organism, genome ERVs undergo common cellular events, including recombination. Indeed, genome recombination plays a role in ERV evolutionary dynamics. Retroviral recombination events that might have been involved in divergence include the acquisition of genes from distantly related retroviruses, swapping facilitating multiple cross-species transmission over millions of years, ectopic recombination between the homologous sequences present in different positions in the chromosomes, and template switching during transcriptional events. The occurrence of these recombinational events might have aided in shaping retroviral diversification and evolution until the present day. Hence, this review describes and discusses in detail the reported recombination events involving ERV to provide the basis for further studies in the field.

摘要

内源性逆转录病毒(ERVs)是古代种系感染的结果,主要由已灭绝的外源性逆转录病毒整合到宿主DNA中。因此,脊椎动物的基因组包含数千个ERV拷贝,为祖先逆转录病毒的多样性及其在宿主基因组中的进化提供了一个“化石”记录。与其他逆转录病毒一样,ERV前病毒序列由 gag、pol、env 和 基因组成,两侧是长末端重复序列(LTRs)。特别是,env基因编码包膜蛋白,该蛋白通过与宿主细胞受体结合启动感染过程,导致膜融合。因此,了解ERV进化轨迹的一个主要因素是env随时间变化的特征。大多数致力于ERVs的env研究旨在寻找“实际”的生理或病理功能,而很少有研究关注这些基因是如何在宿主内获得和修饰的。一旦进入生物体,基因组ERVs会经历常见的细胞事件,包括重组。事实上,基因组重组在ERV进化动力学中起作用。可能参与env分化的逆转录病毒重组事件包括从远缘相关逆转录病毒获得env基因、促进数百万年跨物种传播的env交换、染色体不同位置存在的同源序列之间的异位重组以及转录事件中的模板转换。这些重组事件的发生可能有助于塑造逆转录病毒的多样化和进化直至今日。因此,本综述详细描述和讨论了报道的涉及ERV env的重组事件,为该领域的进一步研究提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7544/10536682/b2b7e8741eac/viruses-15-01856-g001.jpg

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