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hnRNP A/B和hnRNP F/H蛋白的内含子结合位点可刺激前体mRNA剪接。

Intronic binding sites for hnRNP A/B and hnRNP F/H proteins stimulate pre-mRNA splicing.

作者信息

Martinez-Contreras Rebeca, Fisette Jean-François, Nasim Faiz-ul Hassan, Madden Richard, Cordeau Mélanie, Chabot Benoit

机构信息

RNA/RNP Group, Département de Microbiologie et d'Infectiologie, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, Sherbrooke, Québec, Canada.

出版信息

PLoS Biol. 2006 Feb;4(2):e21. doi: 10.1371/journal.pbio.0040021. Epub 2006 Jan 10.

Abstract

hnRNP A/B proteins modulate the alternative splicing of several mammalian and viral pre-mRNAs, and are typically viewed as proteins that enforce the activity of splicing silencers. Here we show that intronic hnRNP A/B-binding sites (ABS) can stimulate the in vitro splicing of pre-mRNAs containing artificially enlarged introns. Stimulation of in vitro splicing could also be obtained by providing intronic ABS in trans through the use of antisense oligonucleotides containing a non-hybridizing ABS-carrying tail. ABS-tailed oligonucleotides also improved the in vivo inclusion of an alternative exon flanked by an enlarged intron. Notably, binding sites for hnRNP F/H proteins (FBS) replicate the activity of ABS by improving the splicing of an enlarged intron and by modulating 5' splice-site selection. One hypothesis formulated to explain these effects is that bound hnRNP proteins self-interact to bring in closer proximity the external pair of splice sites. Consistent with this model, positioning FBS or ABS at both ends of an intron was required to stimulate splicing of some pre-mRNAs. In addition, a computational analysis of the configuration of putative FBS and ABS located at the ends of introns supports the view that these motifs have evolved to support cooperative interactions. Our results document a positive role for the hnRNP A/B and hnRNP F/H proteins in generic splicing, and suggest that these proteins may modulate the conformation of mammalian pre-mRNAs.

摘要

异质性核糖核蛋白A/B(hnRNP A/B)可调节多种哺乳动物和病毒前体信使核糖核酸(pre-mRNA)的可变剪接,通常被视为增强剪接沉默子活性的蛋白质。在此我们表明,内含子hnRNP A/B结合位点(ABS)可刺激含人工扩大内含子的pre-mRNA的体外剪接。通过使用含非杂交性携带ABS尾的反义寡核苷酸以反式提供内含子ABS,也可实现体外剪接的刺激。含ABS尾的寡核苷酸还改善了由扩大内含子侧翼的可变外显子在体内的包含情况。值得注意的是,hnRNP F/H蛋白结合位点(FBS)通过改善扩大内含子的剪接以及调节5'剪接位点选择,重现了ABS的活性。为解释这些效应而提出的一种假说是,结合的hnRNP蛋白自身相互作用,使外部的一对剪接位点靠得更近。与该模型一致,需要在内含子两端定位FBS或ABS以刺激某些pre-mRNA的剪接。此外,对位于内含子末端的推定FBS和ABS构型的计算分析支持了这些基序已进化以支持协同相互作用这一观点。我们的结果证明了hnRNP A/B和hnRNP F/H蛋白在一般剪接中的积极作用,并表明这些蛋白可能调节哺乳动物pre-mRNA的构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11cc/1363690/dbd407053811/pbio.0040021.g001.jpg

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