Quaking and PTB control overlapping splicing regulatory networks during muscle cell differentiation

被引:134
作者
Hall, Megan P. [1 ]
Nagel, Roland J. [1 ]
Fagg, W. Samuel [1 ]
Shiue, Lily [1 ]
Cline, Melissa S. [1 ]
Perriman, Rhonda J. [1 ]
Donohue, John Paul [1 ]
Ares, Manuel, Jr. [1 ]
机构
[1] Univ Calif Santa Cruz, Sinsheimer Labs, RNA Ctr, Dept Mol Cell & Dev Biol, Santa Cruz, CA 95064 USA
关键词
alternative splicing; myogenesis; splicing silencer; splicing enhancer; RNA-BINDING PROTEIN; MESSENGER-RNAS; FACTOR SF1; SIGNAL-TRANSDUCTION; GENE; STAR; EXPRESSION; REVEALS; LOCALIZATION; ENCODES;
D O I
10.1261/rna.038422.113
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Alternative splicing contributes to muscle development, but a complete set of muscle-splicing factors and their combinatorial interactions are unknown. Previous work identified ACUAA ("STAR" motif) as an enriched intron sequence near muscle-specific alternative exons such as Capzb exon 9. Mass spectrometry of myoblast proteins selected by the Capzb exon 9 intron via RNA affinity chromatography identifies Quaking (QK), a protein known to regulate mRNA function through ACUAA motifs in 3' UTRs. We find that QK promotes inclusion of Capzb exon 9 in opposition to repression by polypyrimidine tract-binding protein (PTB). QK depletion alters inclusion of 406 cassette exons whose adjacent intron sequences are also enriched in ACUAA motifs. During differentiation of myoblasts to myotubes, QK levels increase two- to threefold, suggesting a mechanism for QK-responsive exon regulation. Combined analysis of the PTB- and QK-splicing regulatory networks during myogenesis suggests that 39% of regulated exons are under the control of one or both of these splicing factors. This work provides the first evidence that QK is a global regulator of splicing during muscle development in vertebrates and shows how overlapping splicing regulatory networks contribute to gene expression programs during differentiation.
引用
收藏
页码:627 / 638
页数:12
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