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Articles

Competing Upstream 5′ Splice Sites Enhance the Rate of Proximal Splicing

Martin J. Hicks, William F. Mueller, Peter J. Shepard, Klemens J. Hertel
Martin J. Hicks
Department of Microbiology and Molecular Genetics, University of California, Irvine, Irvine, California 92697-4025
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William F. Mueller
Department of Microbiology and Molecular Genetics, University of California, Irvine, Irvine, California 92697-4025
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Peter J. Shepard
Department of Microbiology and Molecular Genetics, University of California, Irvine, Irvine, California 92697-4025
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Klemens J. Hertel
Department of Microbiology and Molecular Genetics, University of California, Irvine, Irvine, California 92697-4025
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  • For correspondence: khertel@uci.edu
DOI: 10.1128/MCB.01071-09
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ABSTRACT

Alternative 5′ splice site selection is one of the major pathways resulting in mRNA diversification. Regulation of this type of alternative splicing depends on the presence of regulatory elements that activate or repress the use of competing splice sites, usually leading to the preferential use of the proximal splice site. However, the mechanisms involved in proximal splice site selection and the thermodynamic advantage realized by proximal splice sites are not well understood. Here, we have carried out a systematic analysis of alternative 5′ splice site usage using in vitro splicing assays. We show that observed rates of splicing correlate well with their U1 snRNA base pairing potential. Weak U1 snRNA interactions with the 5′ splice site were significantly rescued by the proximity of the downstream exon, demonstrating that the intron definition mode of splice site recognition is highly efficient. In the context of competing splice sites, the proximity to the downstream 3′ splice site was more influential in dictating splice site selection than the actual 5′ splice site/U1 snRNA base pairing potential. Surprisingly, the kinetic analysis also demonstrated that an upstream competing 5′ splice site enhances the rate of proximal splicing. These results reveal the discovery of a new splicing regulatory element, an upstream 5′ splice site functioning as a splicing enhancer.

  • Copyright © 2010 American Society for Microbiology
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Competing Upstream 5′ Splice Sites Enhance the Rate of Proximal Splicing
Martin J. Hicks, William F. Mueller, Peter J. Shepard, Klemens J. Hertel
Molecular and Cellular Biology Mar 2010, 30 (8) 1878-1886; DOI: 10.1128/MCB.01071-09

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Competing Upstream 5′ Splice Sites Enhance the Rate of Proximal Splicing
Martin J. Hicks, William F. Mueller, Peter J. Shepard, Klemens J. Hertel
Molecular and Cellular Biology Mar 2010, 30 (8) 1878-1886; DOI: 10.1128/MCB.01071-09
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KEYWORDS

5' Untranslated Regions
alternative splicing
RNA Splice Sites
RNA, Small Nuclear

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