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微小RNA、小干扰RNA、Piwi相互作用RNA:未知中的已知。

miRNA, siRNA, piRNA: Knowns of the unknown.

作者信息

Kutter Claudia, Svoboda Petr

机构信息

Cambridge Research Institute, Li Ka Shing Centre, Cambridge, UK.

出版信息

RNA Biol. 2008 Oct-Dec;5(4):181-8. doi: 10.4161/rna.7227. Epub 2008 Oct 16.

Abstract

RNA silencing is a common term for a group of mechanistically related pathways that produce and employ short non-coding RNA molecules to achieve sequence-specific gene regulation. The RNase III-enzyme Dicer produces small RNAs (smRNAs) in both microRNA (miRNA) and RNA interference (RNAi) pathways. miRNAs modulate physiological and developmental gene expression. They are genome-encoded, endogenous negative regulators of translation and mRNA stability originating from long primary transcripts with local hairpin structures. RNAi is triggered by the processing of long double-stranded RNA (dsRNA) into small interfering RNAs (siRNAs), which mediate sequence-specific cleavage of nascent mRNAs. The third common class of repressive small RNAs, PIWI-associated RNAs (piRNAs), is produced in a Dicer-independent manner. Current data suggest that piRNAs protect the germline from mobile genome invaders such as transposons. A small RNA involved in RNA silencing associates with proteins in an effector ribonucleoprotein complex usually referred to as RNA-Induced Silencing Complex (RISC). Key components of RISC complexes are proteins of the Argonaute family, which determine RISC functions. During three days in May 2008, around two hundred scientists working on RNA silencing met at IMBA, Vienna for the 3(rd) Microsymposium on Small RNAs (Fig. 1) (www.imba.oeaw.ac.at/microsymposium) organized by Javier Martinez.

摘要

RNA沉默是一组机制相关途径的通用术语,这些途径产生并利用短的非编码RNA分子来实现序列特异性的基因调控。核糖核酸酶III家族的酶Dicer在微小RNA(miRNA)和RNA干扰(RNAi)途径中均产生小RNA(smRNA)。miRNA调节生理和发育过程中的基因表达。它们是基因组编码的内源性翻译负调控因子,以及源自具有局部发夹结构的长初级转录本的mRNA稳定性调控因子。RNAi由长双链RNA(dsRNA)加工成小干扰RNA(siRNA)引发,siRNA介导新生mRNA的序列特异性切割。第三类常见的抑制性小RNA,即PIWI相互作用RNA(piRNA),以不依赖Dicer的方式产生。目前的数据表明,piRNA可保护生殖系免受转座子等可移动基因组入侵者的侵害。参与RNA沉默的小RNA与效应核糖核蛋白复合物中的蛋白质结合,该复合物通常称为RNA诱导沉默复合体(RISC)。RISC复合物的关键成分是Argonaute家族的蛋白质,它们决定了RISC的功能。2008年5月的三天里,约两百名从事RNA沉默研究的科学家齐聚维也纳的IMBA,参加由哈维尔·马丁内斯组织的第三届小RNA微型研讨会(图1)(www.imba.oeaw.ac.at/microsymposium)。

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