RNA-directed transcriptional gene silencing and activation in human cells.

Kevin V Morris
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Abstract

The overt loss or uncontrolled gain of gene expression is found at some level in virtually every malady afflicting humans. From cancer to HIV-1, the uncontrolled expression or loss of gene expression is prevalent in human diseases. Approaches toward the specific control of gene expression at the transcriptional level could have the potential to revert or reduce disease pathologies. Over the last several years, researchers have developed methodologies that utilize small antisense non-coding RNAs to specifically silence transcription. Only recently has the endogenous molecular pathway usurped by the introduction of these small RNAs to regulate transcription in human cells been defined. Observations suggest that long antisense non-coding RNAs function as the endogenous epigenetic regulators of transcription in human cells, thus explaining why small antisense RNAs were observed early on to silence transcription via directed epigenetic changes at the target loci. The mechanism of action whereby small regulatory RNAs can either turn gene transcription on or off will be discussed as evidence that one day it may be possible to develop therapeutics to regulate gene transcription and ameliorate particular disease conditions.

Abstract Image

Abstract Image

人类细胞中 RNA 引导的转录基因沉默和激活。
几乎所有困扰人类的疾病都在某种程度上存在基因表达的明显丧失或失控增殖。从癌症到 HIV-1,基因表达的失控或丢失在人类疾病中十分普遍。在转录水平上对基因表达进行特定控制的方法有可能恢复或减少疾病的病理变化。在过去几年中,研究人员已经开发出利用小型反义非编码 RNA 来特异性抑制转录的方法。直到最近,人们才明确了通过引入这些小 RNA 来调节人体细胞转录的内源性分子途径。观察结果表明,长反义非编码 RNA 在人体细胞中起着内源性转录表观遗传调节剂的作用,从而解释了为什么很早就观察到小反义 RNA 通过靶基因位点的定向表观遗传变化来抑制转录。我们将讨论小型调节 RNA 打开或关闭基因转录的作用机制,以证明有朝一日有可能开发出调节基因转录和改善特定疾病状况的疗法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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