Dominant Negative Murine Serum Response Factor: Alternative Splicing within the Activation Domain Inhibits Transactivation of Serum Response Factor Binding Targets
- 1 July 1999
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 19 (7) , 4582-4591
- https://doi.org/10.1128/mcb.19.7.4582
Abstract
Primary transcripts encoding the MADS box superfamily of proteins, such as MEF2 in animals and ZEMa in plants, are alternatively spliced, producing several isoformic species. We show here that murine serum response factor (SRF) primary RNA transcripts are alternatively spliced at the fifth exon, deleting approximately one-third of the C-terminal activation domain. Among the different muscle types examined, visceral smooth muscles have a very low ratio of SRFΔ5 to SRF. Increased levels of SRFΔ5 correlates well with reduced smooth muscle contractile gene activity within the elastic aortic arch, suggesting important biological roles for differential expression of SRFΔ5 variant relative to wild-type SRF. SRFΔ5 forms DNA binding-competent homodimers and heterodimers. SRFΔ5 acts as a naturally occurring dominant negative regulatory mutant that blocks SRF-dependent skeletal α-actin, cardiac α-actin, smooth α-actin, SM22α, and SRF promoter-luciferase reporter activities. Expression of SRFΔ5 interferes with differentiation of myogenic C2C12 cells and the appearance of skeletal α-actin and myogenin mRNAs. SRFΔ5 repressed the serum-induced activity of the c-fos serum response element. SRFΔ5 fused to the yeast Gal4 DNA binding domain displayed low transcriptional activity, which was complemented by overexpression of the coactivator ATF6. These results indicate that the absence of exon 5 might be bypassed through recruitment of transcription factors that interact with extra-exon 5 regions in the transcriptional activating domain. The novel alternatively spliced isoform of SRF, SRFΔ5, may play an important regulatory role in modulating SRF-dependent gene expression.Keywords
This publication has 72 references indexed in Scilit:
- Serum response factor is essential for mesoderm formation during mouse embryogenesisThe EMBO Journal, 1998
- ReviewBiological Chemistry, 1997
- Expression of the Serum Response Factor Gene Is Regulated by Serum Response Factor Binding SitesPublished by Elsevier ,1996
- Physical Interaction between the Mitogen-responsive Serum Response Factor and Myogenic Basic-Helix-Loop-Helix ProteinsJournal of Biological Chemistry, 1996
- Structure of serum response factor core bound to DNANature, 1995
- Interaction with RAP74 subunit of TFIIF is required for transcriptional activation by serum response factorNature, 1995
- Transcriptional repression mediated by the serum response factorFEBS Letters, 1995
- Expression and Purification of the DNA-Binding Domain of SRF: SRF-DB, a Part of a DNA-Binding Protein Which Can Act as a Dominant Negative Mutant in VivoExperimental Cell Research, 1993
- Interaction of HTLV-1 Tax1 with p67SRF causes the aberrant induction of cellular immediate early genes through CArG boxes.Genes & Development, 1992
- Genetic Control of Flower Development by Homeotic Genes in Antirrhinum majusScience, 1990