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SF3B1与染色质的关联决定剪接结果。

SF3B1 association with chromatin determines splicing outcomes.

作者信息

Kfir Nir, Lev-Maor Galit, Glaich Ohad, Alajem Adi, Datta Arnab, Sze Siu K, Meshorer Eran, Ast Gil

机构信息

Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv 69978, Israel.

Department of Genetics, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Cell Rep. 2015 Apr 28;11(4):618-29. doi: 10.1016/j.celrep.2015.03.048. Epub 2015 Apr 16.

Abstract

Much remains unknown concerning the mechanism by which the splicing machinery pinpoints short exons within intronic sequences and how splicing factors are directed to their pre-mRNA targets. One probable explanation lies in differences in chromatin organization between exons and introns. Proteomic, co-immunoprecipitation, and sedimentation analyses described here indicate that SF3B1, an essential splicing component of the U2 snRNP complex, is strongly associated with nucleosomes. ChIP-seq and RNA-seq analyses reveal that SF3B1 specifically binds nucleosomes located at exonic positions. SF3B1 binding is enriched at nucleosomes positioned over short exons flanked by long introns that are also characterized by differential GC content between exons and introns. Disruption of SF3B1 binding to such nucleosomes affects splicing of these exons similarly to SF3B1 knockdown. Our findings suggest that the association of SF3B1 with nucleosomes is functionally important for splice-site recognition and that SF3B1 conveys splicing-relevant information embedded in chromatin structure.

摘要

关于剪接机制如何在内含子序列中精准定位短外显子以及剪接因子如何被导向其前体mRNA靶点,仍有许多未知之处。一种可能的解释在于外显子和内含子之间染色质组织的差异。本文所述的蛋白质组学、免疫共沉淀和沉降分析表明,U2 snRNP复合体的一个必需剪接成分SF3B1与核小体紧密相关。ChIP-seq和RNA-seq分析显示,SF3B1特异性结合位于外显子位置的核小体。SF3B1结合在位于短外显子两侧的长内含子上的核小体处富集,这些外显子和内含子之间还存在GC含量差异。破坏SF3B1与此类核小体的结合对这些外显子剪接的影响与敲低SF3B1类似。我们的研究结果表明,SF3B1与核小体的关联在功能上对剪接位点识别很重要,并且SF3B1传递了嵌入染色质结构中的剪接相关信息。

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