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Piwi-piRNA 途径在转座子军备竞赛中提供了一种适应性防御。

The Piwi-piRNA pathway provides an adaptive defense in the transposon arms race.

作者信息

Aravin Alexei A, Hannon Gregory J, Brennecke Julius

机构信息

Watson School of Biological Sciences, Howard Hughes Medical Institute, Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.

出版信息

Science. 2007 Nov 2;318(5851):761-4. doi: 10.1126/science.1146484.

Abstract

Increasingly complex networks of small RNAs act through RNA-interference (RNAi) pathways to regulate gene expression, to mediate antiviral responses, to organize chromosomal domains, and to restrain the spread of selfish genetic elements. Historically, RNAi has been defined as a response to double-stranded RNA. However, some small RNA species may not arise from double-stranded RNA precursors. Yet, like microRNAs and small interfering RNAs, such species guide Argonaute proteins to silencing targets through complementary base-pairing. Silencing can be achieved by corecruitment of accessory factors or through the activity of Argonaute itself, which often has endonucleolytic activity. As a specific and adaptive regulatory system, RNAi is used throughout eukarya, which indicates a long evolutionary history. A likely function of RNAi throughout that history is to protect the genome from both pathogenic and parasitic invaders.

摘要

越来越复杂的小RNA网络通过RNA干扰(RNAi)途径发挥作用,以调控基因表达、介导抗病毒反应、组织染色体结构域,并抑制自私遗传元件的传播。从历史上看,RNAi被定义为对双链RNA的反应。然而,一些小RNA种类可能并非来自双链RNA前体。然而,与微小RNA和小干扰RNA一样,这类小RNA通过互补碱基配对引导AGO蛋白作用于沉默靶点。沉默可通过辅助因子的共募集或AGO本身的活性来实现,AGO通常具有核酸内切酶活性。作为一种特异性和适应性的调控系统,RNAi在整个真核生物中都有应用,这表明其进化历史悠久。在整个进化历程中,RNAi的一个可能功能是保护基因组免受病原体和寄生入侵者的侵害。

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