Carnero Elena, Sutherland James D, Fortes Puri
Department of Hepatology and Gene Therapy, University of Navarra, Pamplona, Spain.
Biochim Biophys Acta. 2011 Nov-Dec;1809(11-12):660-7. doi: 10.1016/j.bbagrm.2011.05.004. Epub 2011 May 17.
Adenovirus infection has a tremendous impact on the cellular silencing machinery. Adenoviruses express high amounts of non-coding virus associated (VA) RNAs able to saturate key factors of the RNA interference (RNAi) processing pathway, such as Exportin 5 and Dicer. Furthermore, a proportion of VA RNAs is cleaved by Dicer into viral microRNAs (mivaRNAs) that can saturate Argonaute, an essential protein for miRNA function. Thus, processing and function of cellular miRNAs is blocked in adenoviral-infected cells. However, viral miRNAs actively target the expression of cellular genes involved in relevant functions such as cell proliferation, DNA repair or RNA regulation. Interestingly, the cellular silencing machinery is active at early times post-infection and can be used to control the adenovirus cell cycle. This is relevant for therapeutic purposes against adenoviral infections or when recombinant adenoviruses are used as vectors for gene therapy. Manipulation of the viral genome allows the use of adenoviral vectors to express therapeutic miRNAs or to be silenced by the RNAi machinery leading to safer vectors with a specific tropism. This article is part of a "Special Issue entitled:MicroRNAs in viral gene regulation".
腺病毒感染对细胞沉默机制有巨大影响。腺病毒表达大量非编码病毒相关(VA)RNAs,这些RNAs能够使RNA干扰(RNAi)加工途径的关键因子饱和,如Exportin 5和Dicer。此外,一部分VA RNAs被Dicer切割成病毒微小RNA(mivaRNAs),这些mivaRNAs能够使AGO蛋白饱和,AGO蛋白是miRNA功能所必需的蛋白质。因此,在腺病毒感染的细胞中,细胞miRNAs的加工和功能被阻断。然而,病毒miRNAs积极靶向参与细胞增殖、DNA修复或RNA调节等相关功能的细胞基因的表达。有趣的是,细胞沉默机制在感染后早期是活跃的,可用于控制腺病毒的细胞周期。这对于针对腺病毒感染的治疗目的或当重组腺病毒用作基因治疗载体时是相关的。对病毒基因组的操作允许使用腺病毒载体来表达治疗性miRNAs或被RNAi机制沉默,从而产生具有特定嗜性的更安全的载体。本文是“专题:病毒基因调控中的微小RNA”的一部分。