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PMID: 2461941 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regulation of differentiation of the BC3H1 muscle cell line through cAMP-dependent and -independent pathways.

The Journal of biological chemistry ·Vol. 263 ·No. 36 ·1988-12-25 ·Pages 19670-7

Hu JS, Olson EN

Abstract

Serum mitogens, fibroblast growth factor (FGF), and type beta transforming growth factor (TGF-beta) suppress differentiation of the mouse muscle cell line BC3H1; however, the signal transduction pathways whereby these growth factors exert their effects on this system are unknown. The goal of this study was to determine whether the program for differentiation of BC3H1 cells was susceptible to negative regulation by signaling pathways involving cAMP or protein kinase C and whether these intracellular effectors participate in the mechanism by which growth factors prevent establishment of the myogenic phenotype. Exposure of BC3H1 cells to dibutyryl cAMP, 8-bromo-cAMP, or compounds that stimulate adenylate cyclase, i.e. forskolin, prostaglandin E1, and cholera toxin, prevented up-regulation of muscle-specific gene products following growth arrest in mitogen-deficient medium. Conversely, addition of cAMP to differentiated BC3H1 myocytes caused down-regulation of muscle-specific mRNAs. In contrast to the ability of cAMP to block differentiation, chronic exposure to O-tetradecanoylphorbol-13-acetate, the potent activator of protein kinase C, exhibited no apparent effects on expression of muscle-specific gene products. The proto-oncogenes c-myc and c-fos were up-regulated rapidly by cAMP in a manner similar to that observed previously by serum, FGF, and TGF-beta. However, these growth factors failed to increase intracellular cAMP levels, and they did not induce ornithine decarboxylase, which was subject to positive regulation by cAMP and O-tetradecanoyl-13-acetate. Together, these data indicate that differentiation of BC3H1 cells is subject to negative regulation through a cAMP-dependent pathway and that serum mitogens, FGF, and TGF-beta inhibit differentiation through a mechanism independent of cAMP or protein kinase C.

MeSH Terms
1-Methyl-3-isobutylxanthine/pharmacology Alprostadil/pharmacology Animals Bucladesine/pharmacology Cell Differentiation/drug effects Cell Line Colforsin/pharmacology Creatine Kinase/metabolism Cyclic AMP/physiology Fibroblast Growth Factors/pharmacology Kinetics Mice Muscles/cytology Ornithine Decarboxylase/biosynthesis Proto-Oncogenes/drug effects RNA/genetics RNA, Messenger/genetics Receptors, Cholinergic/metabolism Tetradecanoylphorbol Acetate/pharmacology Transforming Growth Factors/pharmacology Troponin/genetics Troponin T
Chemicals
RNA, Messenger Receptors, Cholinergic Troponin Troponin T Colforsin Fibroblast Growth Factors RNA Bucladesine Transforming Growth Factors Cyclic AMP Creatine Kinase Ornithine Decarboxylase Alprostadil Tetradecanoylphorbol Acetate 1-Methyl-3-isobutylxanthine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Hu J S
Department of Biochemistry and Molecular Biology, University of Texas, M. D. Anderson Cancer Center, Houston 77030.
Olson E N
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1988-12-25
Pages
19670-7
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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