真核蛋白编码基因在转录过早终止中的表达衰减。

Deirdre C Tatomer, Jeremy E Wilusz
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引用次数: 3

摘要

真核生物基因组产生了一个复杂的RNA转录物网络,其中许多是以意想不到的方式处理的。在这里,我们强调了蛋白质编码基因位点上的过早转录终止事件如何同时导致短rna的产生和全长mRNA转录物的减弱。我们最近表明,整合子(Int)复合物可以选择性地招募到蛋白质编码基因位点,包括果蝇金属硫蛋白A (MtnA),其中IntS11 RNA内切酶在其5'端附近切割新生转录物。这种由Integrator催化的过早终止事件可以抑制一些全长mrna的表达100倍以上。小核RNA (snRNA)位点的转录同样会被整合子切割终止,但蛋白质编码和snRNA基因位点对整合子亚基的依赖性明显不同。通过过早终止减少真核生物基因输出的其他机制已经被发现,包括由U1 snRNP控制的切割和聚腺苷酸化机制。这些机制似乎在整个转录组中广泛发挥作用。这表明全长转录本的合成并不总是默认的选择,过早终止事件可能导致各种转录本,其中一些可能具有重要的和意想不到的生物学功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attenuation of Eukaryotic Protein-Coding Gene Expression via Premature Transcription Termination.

A complex network of RNA transcripts is generated from eukaryotic genomes, many of which are processed in unexpected ways. Here, we highlight how premature transcription termination events at protein-coding gene loci can simultaneously lead to the generation of short RNAs and attenuate production of full-length mRNA transcripts. We recently showed that the Integrator (Int) complex can be selectively recruited to protein-coding gene loci, including Drosophila metallothionein A (MtnA), where the IntS11 RNA endonuclease cleaves nascent transcripts near their 5' ends. Such premature termination events catalyzed by Integrator can repress the expression of some full-length mRNAs by more than 100-fold. Transcription at small nuclear RNA (snRNA) loci is likewise terminated by Integrator cleavage, but protein-coding and snRNA gene loci have notably distinct dependencies on Integrator subunits. Additional mechanisms that attenuate eukaryotic gene outputs via premature termination have been discovered, including by the cleavage and polyadenylation machinery in a manner controlled by U1 snRNP. These mechanisms appear to function broadly across the transcriptome. This suggests that synthesis of full-length transcripts is not always the default option and that premature termination events can lead to a variety of transcripts, some of which may have important and unexpected biological functions.

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