Saffert Ryan T, Kalejta Robert F
Institute for Molecular Virology and McArdle Laboratory for Cancer Research, University of Wisconsin-Madison, Madison, WI 53706, USA.
J Virol. 2007 Sep;81(17):9109-20. doi: 10.1128/JVI.00827-07. Epub 2007 Jun 27.
In addition to productive lytic infections, herpesviruses such as human cytomegalovirus (HCMV) establish a reservoir of latently infected cells that permit lifelong colonization of the host. When latency is established, the viral immediate-early (IE) genes that initiate the lytic replication cycle are not expressed. HCMV IE gene expression at the start of a lytic infection is facilitated by the viral pp71 protein, which is delivered to cells by infectious viral particles. pp71 neutralizes the Daxx-mediated cellular intrinsic immune defense that silences IE gene expression by generating a repressive chromatin structure on the viral major IE promoter (MIEP). In naturally latently infected cells and in cells latently infected in vitro, the MIEP also adopts a similar silenced chromatin structure. Here we analyze the role of Daxx in quiescent HCMV infections in vitro that mimic some, but not all, of the characteristics of natural latency. We show that in these "latent-like" infections, the Daxx-mediated defense that represses viral gene expression is not disabled because pp71 and Daxx localize to different cellular compartments. We demonstrate that Daxx is required to establish quiescent HCMV infections in vitro because in cells that would normally foster the establishment of these latent-like infections, the loss of Daxx causes the lytic replication cycle to be initiated. Importantly, the lytic cycle is inefficiently completed, which results in an abortive infection. Our work demonstrates that, in certain cell types, HCMV must silence its own gene expression to establish quiescence and prevent abortive infection and that the virus usurps a Daxx-mediated cellular intrinsic immune defense mechanism to do so. This identifies Daxx as one of the likely multiple viral and cellular determinants in the pathway of HCMV quiescence in vitro, and perhaps in natural latent infections as well.
除了产生溶解性感染外,人类巨细胞病毒(HCMV)等疱疹病毒还建立了潜伏感染细胞库,使病毒能够在宿主体内终生定植。当建立潜伏状态时,启动溶解性复制周期的病毒立即早期(IE)基因不会表达。在溶解性感染开始时,HCMV IE基因的表达由病毒pp71蛋白促进,该蛋白由感染性病毒颗粒传递到细胞中。pp71中和了Daxx介导的细胞固有免疫防御,该防御通过在病毒主要IE启动子(MIEP)上产生抑制性染色质结构来沉默IE基因表达。在自然潜伏感染的细胞和体外潜伏感染的细胞中,MIEP也采用类似的沉默染色质结构。在这里,我们分析了Daxx在体外模拟自然潜伏部分(但不是全部)特征的静止HCMV感染中的作用。我们发现,在这些“潜伏样”感染中,抑制病毒基因表达的Daxx介导的防御并未被禁用,因为pp71和Daxx定位于不同的细胞区室。我们证明,Daxx是在体外建立静止HCMV感染所必需的,因为在通常有助于建立这些潜伏样感染的细胞中,Daxx的缺失会导致溶解性复制周期启动。重要的是,溶解性周期无法有效完成,从而导致流产感染。我们的研究表明,在某些细胞类型中,HCMV必须沉默自身基因表达以建立静止状态并防止流产感染,并且病毒利用Daxx介导的细胞固有免疫防御机制来实现这一点。这确定Daxx是体外HCMV静止途径中可能的多种病毒和细胞决定因素之一,也许在自然潜伏感染中也是如此。