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PMID: 16308321 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Arginine/serine-rich protein interaction domain-dependent modulation of a tau exon 10 splicing enhancer: altered interactions and mechanisms for functionally antagonistic FTDP-17 mutations Delta280K AND N279K.

The Journal of biological chemistry ·Vol. 281 ·No. 5 ·2006-02-03 ·Pages 2460-9

D'Souza I, Schellenberg GD

Abstract

Tau exon 10 splicing is altered by autosomal dominant mutations that cause frontotemporal dementia with parkinsonism chromosome 17-type and by unknown mechanisms in other related neurodegenerative disorders. Identifying cis- and trans-regulators of tau exon 10 splicing is therefore crucial for understanding disease mechanisms. We previously identified several splicing enhancers and silencers within exon 10 and intron 10. Here, we show that splicing factors SF2/ASF, Tra2beta, and a 50-kDa nuclear protein bind in vitro to the polypurine enhancer at the 5' end of exon 10. Disease splicing mutations N279K and Delta280K disrupt the enhancer and alter associations with these factors. N279K targets robustly bind Tra2beta compared with the normal enhancer, which may explain why N279K enhances exon 10 splicing in vivo. In contrast, factor associations with Delta280K targets are nearly undetectable, explaining why Delta280K almost abolishes exon 10 splicing in vivo. Small interfering RNA-mediated suppression of endogenous SF2/ASF and Tra2beta significantly reduces exon 10 splicing. Exogenous SF2/ASF dramatically enhances normal exon 10 splicing and efficiently rescues the Delta280K splicing defect. Domain deletion analyses show that the C-terminal RS domains of SF2/ASF and Tra2beta are required for normal exon 10 splicing in vivo. In contrast to Tra2beta, the SF2/ASF RS domain remains essential in the presence of a strengthened enhancer or when either weak splice site is strengthened. The data suggest that SF2/ASF has both essential and regulatory roles, whereas Tra2beta has a supporting role in exon 10 splicing.

MeSH Terms
Alternative Splicing/genetics Animals Arginine Binding Sites Enhancer Elements, Genetic Exons HeLa Cells Humans Mutation/physiology Neurodegenerative Diseases/etiology,genetics Nuclear Proteins/genetics PC12 Cells Protein Binding/genetics RNA Splice Sites RNA-Binding Proteins/genetics Rats Ribonucleoproteins/genetics Serine Serine-Arginine Splicing Factors tau Proteins/genetics
Chemicals
Nuclear Proteins RNA Splice Sites RNA-Binding Proteins Ribonucleoproteins tau Proteins SRSF2 protein, human Serine-Arginine Splicing Factors Serine Arginine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
D'Souza Ian
Department of Medicine (Division of Gerontology and Geriatric Medicine), Pharmacology and Neurology, University of Washington, Seattle, Washington 98195, USA. iands@u.washington.edu
Schellenberg Gerard D
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2006-02-03
Epub
2005-00-23
Pages
2460-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIA NIH HHS · R01 AG11762 · United States
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