Pre-mRNA Splicing in the Nuclear Landscape.

Tucker J Carrocci, Karla M Neugebauer
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引用次数: 16

Abstract

Eukaryotic gene expression requires the cumulative activity of multiple molecular machines to synthesize and process newly transcribed pre-messenger RNA. Introns, the noncoding regions in pre-mRNA, must be removed by the spliceosome, which assembles on the pre-mRNA as it is transcribed by RNA polymerase II (Pol II). The assembly and activity of the spliceosome can be modulated by features including the speed of transcription elongation, chromatin, post-translational modifications of Pol II and histone tails, and other RNA processing events like 5'-end capping. Here, we review recent work that has revealed cooperation and coordination among co-transcriptional processing events and speculate on new avenues of research. We anticipate new mechanistic insights capable of unraveling the relative contribution of coupled processing to gene expression.

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核景观中的前mrna剪接。
真核生物的基因表达需要多个分子机器的累积活性来合成和加工新转录的前信使RNA。内含子,即mrna前体中的非编码区,必须被剪接体去除,剪接体在RNA聚合酶II (Pol II)转录时组装在mrna前体上。剪接体的组装和活性可以通过转录延伸速度、染色质、Pol II和组蛋白尾部的翻译后修饰以及其他RNA加工事件(如5'端盖帽)等特征来调节。在这里,我们回顾了最近的工作,揭示了共同转录加工事件之间的合作和协调,并推测了新的研究途径。我们期待新的机制见解能够揭示耦合处理对基因表达的相对贡献。
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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Erratum: Attenuation of Eukaryotic Protein-Coding Gene Expression via Premature Transcription Termination. Corrigendum: Adolescence and "Late Blooming" Synapses of the Prefrontal Cortex. A Conversation with Alberto Kornblihtt. A Conversation with David Bartel. A Conversation with Ling-Ling Chen.
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