Non-coding RNA in transcription initiation.

William O'Gorman, Kon Yew Kwek, Benjamin Thomas, Alexandre Akoulitchev
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引用次数: 9

Abstract

Diverse classes of non-coding RNAs, including snRNAs (small nuclear RNAs), play fundamental regulatory roles in gene expression. For example, 7SK RNA and the components of the splicing apparatus U1-U6 snRNAs are implicated in the regulation of transcriptional elongation. The first evidence for the involvement of RNA in the regulation of transcriptional initiation is now emerging. TFIIH (transcription factor IIH), a general transcription initiation factor, appears to associate specifically with U1 snRNA, a core splicing component. Reconstituted transcription in vitro demonstrates an increase in the rate of formation of the first phosphodiester bond by RNA polymerase II in presence of U1 snRNA. Reconstituted re-initiation is also stimulated by U1 snRNA. These results suggest that U1 snRNA functions in the regulation of transcription by RNA polymerase II in addition to its role in RNA processing. The implications of these data extend to the development of new technologies that will allow the identification and analysis of diverse RNA species present as regulatory components in transcription-related ribonucleoprotein complexes.

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转录起始的非编码RNA。
不同种类的非编码rna,包括snrna(小核rna),在基因表达中起着基本的调节作用。例如,7SK RNA和剪接装置U1-U6 snRNAs的组分参与转录伸长的调控。RNA参与转录起始调控的第一个证据正在出现。TFIIH(转录因子IIH)是一种通用的转录起始因子,似乎与核心剪接成分U1 snRNA特异性相关。体外重组转录表明,在U1 snRNA存在下,RNA聚合酶II形成第一磷酸二酯键的速度增加。重组的再起始也被U1 snRNA刺激。这些结果表明,U1 snRNA除了在RNA加工过程中发挥作用外,还可以调节RNA聚合酶II的转录。这些数据的意义延伸到新技术的发展,这些新技术将允许鉴定和分析在转录相关核糖核蛋白复合物中作为调控成分存在的各种RNA物种。
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