Unusual intron conservation near tissue-regulated exons found by splicing microarrays

被引:163
作者
Sugnet, Charles W.
Srinivasan, Karpagam
Clark, Tyson A.
O'Brien, Georgeann
Cline, Melissa S.
Wang, Hui
Williams, Alan
Kulp, David
Blume, John E.
Haussler, David
Ares, Manuel, Jr. [1 ]
机构
[1] Univ Calif Santa Cruz, Dept Mol Cell & Dev Biol, Sinsheimer Labs, Santa Cruz, CA 95064 USA
[2] Univ Calif Santa Cruz, Baskin Sch Engn, Dept Comp Sci, Santa Cruz, CA 95064 USA
[3] Univ Calif Santa Cruz, Hughes Undergrad Res Lab, Thimann Labs, Santa Cruz, CA 95064 USA
[4] Affymetrix, Santa Cruz, CA USA
关键词
D O I
10.1371/journal.pcbi.0020004
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Alternative splicing contributes to both gene regulation and protein diversity. To discover broad relationships between regulation of alternative splicing and sequence conservation, we applied a systems approach, using oligonucleotide microarrays designed to capture splicing information across the mouse genome. In a set of 22 adult tissues, we observe differential expression of RNA containing at least two alternative splice junctions for about 40% of the 6,216 alternative events we could detect. Statistical comparisons identify 171 cassette exons whose inclusion or skipping is different in brain relative to other tissues and another 28 exons whose splicing is different in muscle. A subset of these exons is associated with unusual blocks of intron sequence whose conservation in vertebrates rivals that of protein-coding exons. By focusing on sets of exons with similar regulatory patterns, we have identified new sequence motifs implicated in brain and muscle splicing regulation. Of note is a motif that is strikingly similar to the branchpoint consensus but is located downstream of the 59 splice site of exons included in muscle. Analysis of three paralogous membrane-associated guanylate kinase genes reveals that each contains a paralogous tissue-regulated exon with a similar tissue inclusion pattern. While the intron sequences flanking these exons remain highly conserved among mammalian orthologs, the paralogous flanking intron sequences have diverged considerably, suggesting unusually complex evolution of the regulation of alternative splicing in multigene families.
引用
收藏
页码:22 / 35
页数:14
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