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PMID: 8026639 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Muscle cell differentiation of embryonic stem cells reflects myogenesis in vivo: developmentally regulated expression of myogenic determination genes and functional expression of ionic currents.

Developmental biology ·Vol. 164 ·No. 1 ·1994-07-00 ·Pages 87-101

Rohwedel J, Maltsev V, Bober E, Arnold HH, Hescheler J, Wobus AM

Abstract

The mouse blastocyst-derived embryonic stem cell (ES cell) line BLC6 efficiently differentiates into myosin heavy chain-, desmin- and myogenin-positive skeletal muscle cells when cultivated in embryo-like aggregates (embryoid bodies). Here, we show that the muscle-specific determination genes myf5, myogenin, myoD, and myf6 are expressed in these embryoid bodies in a characteristic temporal pattern which precisely reflects the sequence observed during mouse development in vivo. Myf5 is the first gene to be expressed followed by myogenin, myoD, and myf6, in this order. In situ hybridization demonstrates transcripts for myogenin and myoD accumulating in mono- and multinucleated myogenic cells, while myf5 mRNA is already found in mononucleated myoblasts. The myocytes also express functional nicotinic cholinoceptors and exhibit T-type Ca2+ currents and later L-type Ca2+ currents, demonstrating physiological properties of skeletal muscle cells. During myocyte differentiation the density of L-type Ca2+ channels significantly increases while the density of T-type Ca2+ channels decreases. The effect of external signals on myogenic differentiation of BLC6 cells was demonstrated by cocultivation with visceral endodermal END-2 cells and the activin A-secreting WEHI-3 cells. END-2 cells essentially prevent skeletal muscle differentiation, whereas basic fibroblast growth factor, transforming growth factor-beta, and WEHI-3 cells have no or an attenuating effect, respectively. Our results suggest that ES cells recapitulate closely the early steps of muscle development in vivo and may serve as an excellent in vitro system to study this process.

MeSH Terms
Animals Calcium Channels/physiology Cell Differentiation Cells, Cultured DNA-Binding Proteins Embryo, Mammalian/metabolism Epidermal Growth Factor/physiology Gene Expression Regulation Genes, Regulator Mice Muscle Proteins/genetics Muscles/embryology MyoD Protein/genetics Myogenic Regulatory Factor 5 Myogenic Regulatory Factors/genetics Myogenin Receptors, Nicotinic/physiology Stem Cells/metabolism Trans-Activators
Chemicals
Calcium Channels DNA-Binding Proteins Muscle Proteins Myf5 protein, mouse MyoD Protein Myog protein, mouse Myogenic Regulatory Factor 5 Myogenic Regulatory Factors Myogenin Receptors, Nicotinic Trans-Activators myogenic factor 6 Epidermal Growth Factor
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Rohwedel J
Institute of Plant Genetics and Crop Plant Research, Gatersleben, Germany.
Maltsev V
Bober E
Arnold H H
Hescheler J
Wobus A M
Article Info
Journal
Developmental biology
Abbr.
Dev Biol
ISSN
0012-1606
Published
1994-07-00
Pages
87-101
Language
English
Region
United States
NLM ID
0372762
Subset
IM
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