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转录与可变剪接之间的偶联

Coupling between transcription and alternative splicing.

作者信息

Schor Ignacio E, Gómez Acuña Luciana I, Kornblihtt Alberto R

机构信息

Laboratorio de Fisiologia y Biologia Molecular, Departmento de Fisiologia, Biologia Molecular y Celular, IFIBYNE-CONICET, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, PAB. II, 20 Piso, Buenos Aires, 1428, Argentina.

出版信息

Cancer Treat Res. 2013;158:1-24. doi: 10.1007/978-3-642-31659-3_1.

Abstract

The scenario of alternative splicing regulation is far more complex than the classical picture of a pre-mRNA being processed post-transcriptionally in more than one way. Introns are efficiently removed while transcripts are still being synthesized, supporting the idea of a co-transcriptional regulation of alternative splicing. Evidence of a functional coupling between splicing and transcription has recently emerged as it was observed that properties of one process may affect the outcome of the other. Co-transcriptionality is thought to improve splicing efficiency and kinetics by directing the nascent pre-mRNA into proper spliceosome assembly and favoring splicing factor recruitment. Two models have been proposed to explain the coupling of transcription and alternative splicing: in the recruitment model, promoters and pol II status affect the recruitment to the transcribing gene of splicing factors or bifunctional factors acting on both transcription and splicing; in the kinetic model, differences in the elongation rate of pol II would determine the timing in which splicing sites are presented, and thus the outcome of alternative splicing decisions. In the later model, chromatin structure has emerged as a key regulator. Although definitive evidence for transcriptionally coupled alternative splicing alterations in tumor development or cancer pathogenesis is still missing, many alternative splicing events altered in cancer might be subject to transcription-splicing coupling regulation.

摘要

可变剪接调控的情况远比经典的前体mRNA在转录后以多种方式进行加工的图景复杂得多。内含子在转录本仍在合成时就被有效去除,这支持了可变剪接的共转录调控观点。由于观察到一个过程的特性可能会影响另一个过程的结果,剪接与转录之间功能偶联的证据最近出现了。共转录被认为通过将新生的前体mRNA引导至适当的剪接体组装并促进剪接因子招募来提高剪接效率和动力学。已经提出了两种模型来解释转录与可变剪接的偶联:在招募模型中,启动子和聚合酶II的状态会影响对转录基因的剪接因子或作用于转录和剪接的双功能因子的招募;在动力学模型中,聚合酶II延伸速率的差异将决定剪接位点出现的时间,从而决定可变剪接决定的结果。在后面这个模型中,染色质结构已成为关键调节因子。尽管在肿瘤发生或癌症发病机制中,转录偶联的可变剪接改变的确切证据仍然缺失,但许多在癌症中发生改变的可变剪接事件可能受转录-剪接偶联调控。

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