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分子伪装者的模仿:与植物 RNA 病毒相关的卫星的末端结构。

Mimicry of molecular pretenders: the terminal structures of satellites associated with plant RNA viruses.

机构信息

Graduate Institute of Biotechnology, National Chung Hsing University, Taichung, Taiwan.

出版信息

RNA Biol. 2010 Mar-Apr;7(2):162-71. doi: 10.4161/rna.7.2.11089. Epub 2010 Mar 30.

Abstract

Satellite RNAs (satRNAs) and satellite viruses depend on the replicase complexes provided by their cognate helper viruses and host plants for replication, pretending that they are part of the viral genomes. Although satRNAs and satellite viruses do not share significant nucleotide sequence similarity with the helper viruses, the essential cis-acting elements recognized by the replicase complexes must reside on their genomes, acting as the mimicry for the molecular pretenders. By understanding how this molecular mimicry deceives the helper viruses into supporting the satellites, a significant amount of knowledge of the basic requirements and mechanisms for replication of viruses and satellites has been obtained. Here we review the recent advances in understanding the effects of the cis elements at the termini of satRNAs and satellite viruses on their accumulation. Several well-characterized satellite/helper virus systems, representing the non-coding short satRNAs, mRNA-type long satRNAs, circular satRNAs and satellite viruses, are compared and contrasted. It is concluded that different satellites may adopt different strategies to exploit the replication/transcription/translation machineries of their helper viruses, and different mimicries may be implemented by the same molecular pretender for different biological functions.

摘要

卫星 RNA(satRNA)和卫星病毒依赖其同源辅助病毒和宿主植物提供的复制酶复合物进行复制,从而将自己伪装成病毒基因组的一部分。尽管 satRNA 和卫星病毒与辅助病毒之间没有显著的核苷酸序列相似性,但复制酶复合物识别的必需顺式作用元件必须位于它们的基因组上,从而充当分子伪装者的模拟物。通过了解这种分子伪装如何欺骗辅助病毒来支持卫星,可以获得大量关于病毒和卫星复制的基本要求和机制的知识。在这里,我们回顾了近年来对 satRNA 和卫星病毒末端顺式元件对其积累影响的理解的进展。比较和对比了几个经过充分表征的卫星/辅助病毒系统,代表非编码短 satRNA、mRNA 型长 satRNA、环状 satRNA 和卫星病毒。结论是,不同的卫星可能采用不同的策略来利用其辅助病毒的复制/转录/翻译机制,并且相同的分子伪装者可能为不同的生物学功能实施不同的模拟。

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