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小 RNA、RNAi 和线虫中基因沉默的遗传。

Small RNAs, RNAi and the inheritance of gene silencing in Caenorhabditis elegans.

机构信息

School of Life Sciences, University of Science and Technology of China, Hefei 230027, China.

出版信息

J Genet Genomics. 2013 Apr 20;40(4):153-60. doi: 10.1016/j.jgg.2012.12.007. Epub 2013 Feb 4.

Abstract

Invasive nucleic acids such as transposons and viruses usually exhibit aberrant characteristics, e.g., unpaired DNA or abnormal double-stranded RNA. Organisms employ a variety of strategies to defend themselves by distinguishing self and nonself substances and disabling these invasive nucleic acids. Furthermore, they have developed ways to remember this exposure to invaders and transmit the experience to their descendants. The mechanism underlying this inheritance has remained elusive. Recent research has shed light on the initiation and maintenance of RNA-mediated inherited gene silencing. Small regulatory RNAs play a variety of crucial roles in organisms, including gene regulation, developmental timing, antiviral defense, and genome integrity, via a process termed as RNA interference (RNAi). Recent research has revealed that small RNAs and the RNAi machinery are engaged in establishing and promoting transgenerational gene silencing. Small RNAs direct the RNAi and chromatin modification machinery to the cognate nucleic acids to regulate gene expression and epigenetic alterations. Notably, these acquired small RNAs and epigenetic changes persist and are transmitted from parents to offspring for multiple generations. Thus, RNAi is a vital determinant of the inheritance of gene silencing and acts as a driving force of evolution.

摘要

侵入性核酸,如转座子和病毒,通常表现出异常特征,例如未配对的 DNA 或异常的双链 RNA。生物体通过区分自身和非自身物质并使这些侵入性核酸失活来采用多种策略来保护自己。此外,它们已经开发出了记住这种与入侵者接触并将经验传递给后代的方法。这种遗传的机制仍然难以捉摸。最近的研究揭示了 RNA 介导的遗传基因沉默的启动和维持。小调控 RNA 通过一种称为 RNA 干扰 (RNAi) 的过程,在生物体中发挥着各种关键作用,包括基因调控、发育定时、抗病毒防御和基因组完整性。最近的研究表明,小 RNA 和 RNAi 机制参与建立和促进跨代基因沉默。小 RNA 指导 RNAi 和染色质修饰机制与同源核酸结合,以调节基因表达和表观遗传改变。值得注意的是,这些获得的小 RNA 和表观遗传变化持续存在,并从父母传递给后代,历经多个世代。因此,RNAi 是基因沉默遗传的重要决定因素,是进化的驱动力。

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