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PMID: 25892229 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

SF3B1 association with chromatin determines splicing outcomes.

Cell reports ·Vol. 11 ·No. 4 ·2015-04-28 ·Pages 618-29

Kfir N, Lev-Maor G, Glaich O, Alajem A, Datta A, Sze SK, Meshorer E, Ast G

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.

MeSH Terms
Base Sequence Exons GC Rich Sequence HeLa Cells Humans Molecular Sequence Data Nucleosomes/genetics,metabolism Phosphoproteins/genetics,metabolism Protein Binding RNA Splicing RNA Splicing Factors Ribonucleoprotein, U2 Small Nuclear/genetics,metabolism
Chemicals
Nucleosomes Phosphoproteins RNA Splicing Factors Ribonucleoprotein, U2 Small Nuclear SF3B1 protein, human
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Kfir Nir
Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv 69978, Israel.
Lev-Maor Galit
Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv 69978, Israel.
Glaich Ohad
Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv 69978, Israel.
Alajem Adi
Department of Genetics, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Datta Arnab
School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore.
Sze Siu K
School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore.
Meshorer Eran
Department of Genetics, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel; The Edmond and Lily Safra Center for Brain Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel. Electronic address: meshorer@huji.ac.il.
Ast Gil
Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Ramat Aviv 69978, Israel. Electronic address: gilast@post.tau.ac.il.
Article Info
Journal
Cell reports
Abbr.
Cell Rep
ISSN
2211-1247
Published
2015-04-28
Epub
2015-00-16
Pages
618-29
Language
English
Region
United States
NLM ID
101573691
Subset
IM
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