Irausquin Stephanie Jiménez, Hughes Austin L
Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA.
J Gen Virol. 2008 Aug;89(Pt 8):1921-1929. doi: 10.1099/vir.0.2008/000992-0.
Analysis of complete polyprotein-encoding sequences of hepatitis C virus genotype 1b (HCV-1b) showed evidence not only of past purifying selection but also of abundant slightly deleterious non-synonymous variants subject to ongoing purifying selection. The NS3 protein (with protease and NTPase/helicase activity) revealed less evidence of purifying selection acting on the cytotoxic T cells (CTL) epitopes than did the other proteins, whereas outside the CTL epitopes NS3 was more conserved than the other proteins. Moreover, NS3 showed a high incidence of forward-and-backward or parallel non-synonymous changes in CTL epitopes, as measured by the consistency index across the phylogeny of HCV-1b genomes computed at non-singleton non-synonymous polymorphic sites. This result implies that certain non-synonymous mutations have recurred frequently throughout the phylogeny in the codons encoding the epitopes in NS3. This pattern is most easily explained by the frequent re-occurrence of the same set of escape mutations in CTL epitopes of NS3, which are selectively favoured within hosts expressing the presenting class I major histocompatibility complex molecule, but are subject to purifying selection at the population level. The fact that this pattern is most strikingly observed in the case of NS3 suggests that the evolutionary conflict between immune escape and functional constraint on the protein is more acute in the case of NS3 than any of the other proteins of HCV-1b.
对丙型肝炎病毒1b型(HCV-1b)完整多聚蛋白编码序列的分析表明,不仅存在过去的纯化选择证据,而且存在大量受到持续纯化选择的轻微有害非同义变异。NS3蛋白(具有蛋白酶和NTP酶/解旋酶活性)显示,与其他蛋白相比,作用于细胞毒性T细胞(CTL)表位的纯化选择证据较少,而在CTL表位之外,NS3比其他蛋白更保守。此外,通过在非单态非同义多态性位点计算的HCV-1b基因组系统发育中的一致性指数测量,NS3在CTL表位中显示出高发生率的正向和反向或平行非同义变化。这一结果意味着,在编码NS3表位的密码子中,某些非同义突变在整个系统发育中频繁出现。这种模式最容易通过NS3的CTL表位中同一组逃逸突变的频繁再次出现来解释,这些突变在表达呈递I类主要组织相容性复合体分子的宿主内受到选择性青睐,但在群体水平上受到纯化选择。在NS3的情况下最明显地观察到这种模式这一事实表明,与HCV-1b的任何其他蛋白相比,NS3中免疫逃逸与蛋白功能限制之间的进化冲突更为尖锐。