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调控超剪接体中的可变剪接。

Regulation of alternative splicing within the supraspliceosome.

机构信息

Department of Genetics, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

J Struct Biol. 2012 Jan;177(1):152-9. doi: 10.1016/j.jsb.2011.11.005. Epub 2011 Nov 12.

Abstract

Alternative splicing is a fundamental feature in regulating the eukaryotic transcriptome, as ~95% of multi-exon human Pol II transcripts are subject to this process. Regulated splicing operates through the combinatorial interplay of positive and negative regulatory signals present in the pre-mRNA, which are recognized by trans-acting factors. All these RNA and protein components are assembled in a gigantic, 21 MDa, ribonucleoprotein splicing machine - the supraspliceosome. Because most alternatively spliced mRNA isoforms vary between different cell and tissue types, the ability to perform alternative splicing is expected to be an integral part of the supraspliceosome, which constitutes the splicing machine in vivo. Here we show that both the constitutively and alternatively spliced mRNAs of the endogenous human pol II transcripts: hnRNP A/B, survival of motor neuron (SMN) and ADAR2 are predominantly found in supraspliceosomes. This finding is consistent with our observations that the splicing regulators hnRNP G as well as all phosphorylated SR proteins are predominantly associated with supraspliceosomes. We further show that changes in alternative splicing of hnRNP A/B, affected by up regulation of SRSF5 (SRp40) or by treatment with C6-ceramide, occur within supraspliceosomes. These observations support the proposed role of the supraspliceosome in splicing regulation and alternative splicing.

摘要

可变剪接是调节真核生物转录组的一个基本特征,因为~95%的多外显子人类 Pol II 转录本都受到这个过程的影响。调节性剪接通过前体 mRNA 中存在的正负调节信号的组合相互作用来运作,这些信号被反式作用因子识别。所有这些 RNA 和蛋白质成分都组装在一个巨大的 21 MDa 的核糖核蛋白剪接机器——超剪接体中。由于大多数可变剪接的 mRNA 异构体在不同的细胞和组织类型之间存在差异,因此进行可变剪接的能力预计将是超剪接体的一个组成部分,超剪接体构成了体内的剪接机器。在这里,我们表明,内源性人类 pol II 转录本:hnRNP A/B、运动神经元存活 (SMN) 和 ADAR2 的组成性和可变剪接的 mRNA 主要存在于超剪接体中。这一发现与我们的观察结果一致,即剪接调节剂 hnRNP G 以及所有磷酸化的 SR 蛋白主要与超剪接体相关联。我们进一步表明,hnRNP A/B 的可变剪接变化,受 SRSF5 (SRp40) 的上调或 C6-神经酰胺处理的影响,发生在超剪接体中。这些观察结果支持超剪接体在剪接调节和可变剪接中的作用。

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Regulation of alternative splicing within the supraspliceosome.调控超剪接体中的可变剪接。
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