重组和冠状病毒缺陷干扰rna

David A. Brian , Willy J.M. Spaan
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引用次数: 81

摘要

在14种冠状病毒中的4种中发现了天然存在缺陷的干扰rna。它们的大小从2.2 kb到大约25 kb不等,或占30 kb亲本病毒基因组的80%。在所有情况下,大DI rna似乎并不需要辅助病毒来进行细胞内复制,并且假设它们本身可能作为疾病媒介发挥作用。冠状病毒DI rna似乎是由病毒基因组的内部缺失(通过非同源重组事件)或通过聚合酶链切换(复制选择)机制产生的较大尺寸的DI rna。除了使用病毒RNA复制和病毒装配的研究,使用DI冠状病毒RNA在主要研究高频的机制,因地制宜RNA重组事件导致领导人收购在病毒复制(也就是说,领导者融合事件发生在subgenomic信使RNA的合成和leader-switching事件可以发生在DI RNA复制),特色的冠状病毒(arteriviruses)。冠状病毒DI rna也被设计成载体,用于产生亲本病毒基因组的靶向重组体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recombination and Coronavirus Defective Interfering RNAs

Naturally occurring defective interfering RNAs have been found in 4 of 14 coronavirus species. They range in size from 2.2 kb to approximately 25 kb, or 80% of the 30-kb parent virus genome. The large DI RNAs do not in all cases appear to require helper virus for intracellular replication and it has been postulated that they may on their own function as agents of disease. Coronavirus DI RNAs appear to arise by internal deletions (through nonhomologous recombination events) on the virus genome or on DI RNAs of larger size by a polymerase strand-switching (copy-choice) mechanism. In addition to their use in the study of virus RNA replication and virus assembly, coronavirus DI RNAs are being used in a major way to study the mechanism of a high-frequency, site-specific RNA recombination event that leads to leader acquisition during virus replication (i.e., the leader fusion event that occurs during synthesis of subgenomic mRNAs, and the leader-switching event that can occur during DI RNA replication), a distinguishing feature of coronaviruses (and arteriviruses). Coronavirus DI RNAs are also being engineered as vehicles for the generation of targeted recombinants of the parent virus genome.

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