Davison Andrew J, Dargan Derrick J, Stow Nigel D
MRC Virology Unit, Institute of Virology, Church Street, Glasgow G11 5JR, UK.
Antiviral Res. 2002 Oct;56(1):1-11. doi: 10.1016/s0166-3542(02)00107-9.
Evolutionary studies have a large theoretical component and will not directly provide therapies for herpesvirus infections. However, they do provide a conceptual framework within which we can evaluate the origins of the various systems that contribute to viral lifestyle. An evolutionary context allows ancient systems that are fundamental to the replication of all herpesviruses to be distinguished from those that have developed relatively recently in order to tailor viruses to particular biological niches. Both categories are in principle accessible to intervention, either to prevent basic replicative capabilities or to reduce the advantages that the virus has in its interactions with the host. Phylogenetic data provide estimates of evolutionary rate for herpesviruses that are only between one and two orders of magnitude greater than those of their hosts. However, it is becoming apparent that certain genes have evolved much faster under selection pressures and by mechanisms that are not well understood. Nonetheless, the mutation rates of even the most highly conserved genes are sufficient to permit herpesviruses to escape from antiviral therapy. Greater understanding of the origins and functions of herpesvirus genes may lead to new insights into the determinants of pathogenesis and hence to new diagnostic and therapeutic targets.
进化研究有很大的理论成分,不会直接为疱疹病毒感染提供治疗方法。然而,它们确实提供了一个概念框架,在这个框架内我们可以评估促成病毒生存方式的各种系统的起源。进化背景使所有疱疹病毒复制所必需的古老系统与那些为使病毒适应特定生物生态位而相对较新发展出来的系统得以区分。原则上,这两类系统都可以进行干预,要么阻止基本的复制能力,要么减少病毒在与宿主相互作用中所具有的优势。系统发育数据提供了疱疹病毒进化速率的估计值,仅比其宿主的进化速率高1至2个数量级。然而,越来越明显的是,某些基因在选择压力下通过尚未完全理解的机制进化得要快得多。尽管如此,即使是最高度保守的基因的突变率也足以使疱疹病毒逃脱抗病毒治疗。对疱疹病毒基因起源和功能的更深入了解可能会带来对发病机制决定因素的新见解,从而带来新的诊断和治疗靶点。