Two domains of MyoD mediate transcriptional activation of genes in repressive chromatin: a mechanism for lineage determination in myogenesis.
Open Access
- 15 February 1997
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 11 (4), 436-450
- https://doi.org/10.1101/gad.11.4.436
Abstract
Genetic studies have demonstrated that MyoD and Myf5 establish the skeletal muscle lineage, whereas myogenin mediates terminal differentiation, yet the molecular basis for this distinction is not understood. We show that MyoD can remodel chromatin at binding sites in muscle gene enhancers and activate transcription at previously silent loci. TGF-beta, basic-FGF, and sodium butyrate blocked MyoD-mediated chromatin reorganization and the initiation of transcription. In contrast, TGF-beta and sodium butyrate did not block transcription when added after chromatin remodeling had occurred. MyoD and Myf-5 were 10-fold more efficient than myogenin at activating genes in regions of transcriptionally silent chromatin. Deletion mutagenesis of the MyoD protein demonstrated that the ability to activate endogenous genes depended on two regions: a region rich in cysteine and histidine residues between the acidic activation domain and the bHLH domain, and a second region in the carboxyl terminus of the protein. Neither region has been shown previously to regulate gene transcription and both have domains that are conserved in the Myf5 protein. Our results establish a mechanism for chromatin modeling in the skeletal muscle lineage and define domains of MyoD, independent of the activation domain, that participate in chromatin reorganization.Keywords
This publication has 65 references indexed in Scilit:
- A CBP Integrator Complex Mediates Transcriptional Activation and AP-1 Inhibition by Nuclear ReceptorsCell, 1996
- The Role of the CANNTG Promoter Element (E box) and the Myocyte‐enhancer‐binding‐factor‐2 (MEF‐2) Site in the Transcriptional Regulation of the Chick Myogenin GeneEuropean Journal of Biochemistry, 1995
- Chromatin: Ga-ga over GAGA factorCurrent Biology, 1995
- Tissue-specific gene activation by MyoD: determination of specificity by cis-acting repression elements.Genes & Development, 1994
- Nucleosome Disruption by Transcription Factor Binding in YeastScience, 1993
- Myogenin gene disruption results in perinatal lethality because of severe muscle defectNature, 1993
- Muscle deficiency and neonatal death in mice with a targeted mutation in the myogenin geneNature, 1993
- Structural and Functional Requirements for the Chromatin Transition at the PHO5 Promoter in Saccharomyces cerevisiae upon PHO5 ActivationJournal of Molecular Biology, 1993
- Temporal and quantitative analysis of myogenic regulatory and growth factor gene expression in the developing mouse embryoDevelopmental Biology, 1992
- Transcription Factor Loading on the MMTV Promoter: A Bimodal Mechanism for Promoter ActivationScience, 1992