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PMID: 9056669 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Autoactivation of Xenopus MyoD transcription and its inhibition by USF.

Cell growth & differentiation : the molecular biology journal of the American Association for Cancer Research ·Vol. 8 ·No. 3 ·1997-03-00 ·Pages 275-82

Lun Y, Sawadogo M, Perry M

Abstract

Members of the MyoD family of muscle-specific transcription factors play central roles in the formation and differentiation of skeletal muscle; however, steps involved in the initiation and subsequent regulation of myogenic factor expression are poorly understood. To investigate mechanisms underlying muscle cell type-specific MyoD gene expression, the functions of regulatory elements that control Xenopus MyoDa gene transcription were analyzed. We show that E boxes in the XMyoDa promoter have dual functions. These sites bind myogenic basic helix-loop-helix proteins and serve as target sites for direct autoactivation. In addition, these regulatory elements bind other, more widely expressed proteins that repress promoter activity. In particular, the binding of the transcriptional regulatory protein USF to a conserved site in the XMyoDa promoter decreased basal activity of the promoter and inhibited MyoD-dependent autoactivation. The results suggest that XMyoD transcription and myogenic factor activity is governed by a competition between muscle-specific, positive-acting factors and widely expressed repressors for binding to common regulatory sites.

MeSH Terms
Animals Base Sequence Cells, Cultured DNA-Binding Proteins Gene Expression Regulation Helix-Loop-Helix Motifs/physiology Homeostasis Muscles/metabolism MyoD Protein/metabolism Nuclear Proteins/metabolism Oocytes/metabolism Promoter Regions, Genetic/physiology Transcription Factors/metabolism Upstream Stimulatory Factors Xenopus
Chemicals
DNA-Binding Proteins MyoD Protein Nuclear Proteins Transcription Factors Upstream Stimulatory Factors
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lun Y
Department of Biochemistry, The University of Texas M. D. Anderson Cancer Center, Houston 77030, USA.
Sawadogo M
Perry M
Article Info
Journal
Cell growth & differentiation : the molecular biology journal of the American Association for Cancer Research
Abbr.
Cell Growth Differ
ISSN
1044-9523
Published
1997-03-00
Pages
275-82
Language
English
Region
United States
NLM ID
9100024
Subset
IM
External Links
PubMed source
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