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Demystifying the nuclear function of Argonaute proteins

机译:揭秘Argonaute蛋白的核功能

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摘要

The Argonaute family of proteins is highly evolutionarily conserved and plays essential roles in small RNAmediated gene regulatory pathways and in a wide variety of cellular processes. They were initially discovered by genetics studies in plants and have been well characterized as key components of gene silencing pathways guided by small RNAs, a phenomenon known as RNA interference. Conventionally, guided by different classes of small RNAs, Argonautes bind to and silence homologous target sequences at the post-transcriptional level. Increasing lines of evidence support their multifunctional roles in the nucleus. Advances in high-throughput genome-wide methodologies have greatly facilitated our understanding of their functions in post-transcriptional gene silencing as well as in other nuclear events. In this point-of-view, we will summarize key findings from genome-wide analyses of the Ago subfamily of proteins in mammals and Drosophila, discuss their nuclear functions in the regulation of transcription and alternative splicing identified in recent years, and briefly touch upon their potential implications in cancer.
机译:Argonaute蛋白质家族在进化上高度保守,并在小RNA介导的基因调节途径和各种细胞过程中起着至关重要的作用。它们最初是通过植物遗传学研究发现的,并已被很好地表征为由小RNA引导的基因沉默途径的关键组成部分,这种现象被称为RNA干扰。常规地,在不同类别的小RNA的指导下,Argonautes在转录后水平结合并沉默同源靶序列。越来越多的证据支持它们在细胞核中的多功能作用。高通量全基因组方法学的进步极大地促进了我们对其转录后基因沉默以及其他核事件中功能的理解。在这种观点下,我们将总结对哺乳动物和果蝇中蛋白质的Ago亚家族进行全基因组分析的主要发现,讨论它们在近年来确定的转录调控和选择性剪接中的核功能,并简要介绍一下它们对癌症的潜在影响。

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