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Transcriptional gene silencing in humans

机译:在人类中沉默的转录基因

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摘要

It has been over a decade since the first observation that small non-coding RNAs can functionally modulate epigenetic states in human cells to achieve functional transcriptional gene silencing (TGS). TGS is mechanistically distinct from the RNA interference (RNAi) gene-silencing pathway. TGS can result in long-term stable epigenetic modifications to gene expression that can be passed on to daughter cells during cell division, whereas RNAi does not. Early studies of TGS have been largely overlooked, overshadowed by subsequent discoveries of small RNA-directed post-TGS and RNAi. A reappraisal of early work has been brought about by recent findings in human cells where endogenous long non-coding RNAs function to regulate the epigenome. There are distinct and common overlaps between the proteins involved in small and long non-coding RNA transcriptional regulatory mechanisms, suggesting that the early studies using small non-coding RNAs to modulate transcription were making use of a previously unrecognized endogenous mechanism of RNA-directed gene regulation. Here we review how non-coding RNA plays a role in regulation of transcription and epigenetic gene silencing in human cells by revisiting these earlier studies and the mechanistic insights gained to date. We also provide a list of mammalian genes that have been shown to be transcriptionally regulated by non-coding RNAs. Lastly, we explore how TGS may serve as the basis for development of future therapeutic agents.
机译:由于第一次观察到小于非编码RNA可以在人体细胞中可以在人体细胞中可以在人体细胞中进行功能转录态沉默(TGS),因此已经过了十年。 TGS与RNA干扰(RNAi)基因沉默途径机械地不同。 TGS可以导致长期稳定的表观遗传修饰对基因表达可以在细胞划分期间可以传递给子细胞,而RNAi则没有。 TGS的早期研究已经很大程度上被忽视,通过随后发现的小RNA导向后TG和RNAi发现了。最近在人类细胞中的最新发现引起了早期工作的重新评估,其中内源性长的非编码RNA函数来调节表观蛋白酶。涉及小型和长编码RNA转录调节机制的蛋白质之间存在明显和常见的重叠,表明使用小非编码RNA调节转录的早期研究正在利用先前未被识别的RNA导向基因的内源机制规定。在这里,我们通过重新探测这些早期的研究以及迄今为止获得的机械洞察力,如何在人体细胞调节和表观遗传基因中发挥作用的作用。我们还提供哺乳动物基因列表,已被证明通过非编码RNA进行转录调节。最后,我们探讨TGS如何作为未来治疗剂发展的基础。

著录项

  • 来源
    《Nucleic Acids Research》 |2016年第14期|共13页
  • 作者单位

    Scripps Res Inst Dept Mol &

    Expt Med 10666 N Torrey Pines Rd La Jolla CA 92037 USA;

    Scripps Res Inst Dept Mol &

    Expt Med 10666 N Torrey Pines Rd La Jolla CA 92037 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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