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丙型肝炎病毒E1/E2基因连接处的同义共变异决定病毒体适应性。

Synonymous Co-Variation across the E1/E2 Gene Junction of Hepatitis C Virus Defines Virion Fitness.

作者信息

Palmer Brendan A, Fanning Liam J

机构信息

Molecular Virology Diagnostic & Research Laboratory, Department of Medicine, University College Cork, Cork, Ireland.

出版信息

PLoS One. 2016 Nov 23;11(11):e0167089. doi: 10.1371/journal.pone.0167089. eCollection 2016.

Abstract

Hepatitis C virus is a positive-sense single-stranded RNA virus. The gene junction partitioning the viral glycoproteins E1 and E2 displays concurrent sequence evolution with the 3'-end of E1 highly conserved and the 5'-end of E2 highly heterogeneous. This gene junction is also believed to contain structured RNA elements, with a growing body of evidence suggesting that such structures can act as an additional level of viral replication and transcriptional control. We have previously used ultradeep pyrosequencing to analyze an amplicon library spanning the E1/E2 gene junction from a treatment naïve patient where samples were collected over 10 years of chronic HCV infection. During this timeframe maintenance of an in-frame insertion, recombination and humoral immune targeting of discrete virus sub-populations was reported. In the current study, we present evidence of epistatic evolution across the E1/E2 gene junction and observe the development of co-varying networks of codons set against a background of a complex virome with periodic shifts in population dominance. Overtime, the number of codons actively mutating decreases for all virus groupings. We identify strong synonymous co-variation between codon sites in a group of sequences harbouring a 3 bp in-frame insertion and propose that synonymous mutation acts to stabilize the RNA structural backbone.

摘要

丙型肝炎病毒是一种正链单链RNA病毒。分隔病毒糖蛋白E1和E2的基因连接处显示出与E1的3'端高度保守和E2的5'端高度异质性同时发生的序列进化。该基因连接处也被认为包含结构化RNA元件,越来越多的证据表明这些结构可以作为病毒复制和转录控制的额外层面。我们之前使用超深度焦磷酸测序来分析一个来自未经治疗的患者的跨越E1/E2基因连接处的扩增子文库,该患者在慢性丙型肝炎病毒感染的10年期间收集了样本。在此期间,报告了一个框内插入的维持、重组以及离散病毒亚群的体液免疫靶向。在当前研究中,我们展示了跨E1/E2基因连接处上位进化的证据,并观察到在复杂病毒群落背景下密码子共变网络的发展以及种群优势的周期性变化。随着时间的推移,所有病毒分组中积极突变的密码子数量减少。我们在一组含有3 bp框内插入的序列中的密码子位点之间鉴定出强烈的同义共变,并提出同义突变起到稳定RNA结构骨架的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/817f/5120871/07ec7081f157/pone.0167089.g001.jpg

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