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PMID: 7820536 Published · ppublish English Journal Article

Is intercellular communication via gap junctions required for myoblast fusion?

Cell adhesion and communication ·Vol. 2 ·No. 4 ·1994-08-00 ·Pages 329-43

Mège RM, Goudou D, Giaume C, Nicolet M, Rieger F

Abstract

Fusion of myoblasts to form syncitial muscle cells results from a complex series of sequential events including cell alignment, cell adhesion and cell communication. The aim of the present investigation was to assess whether intercellular communication through gap junctions would be required for subsequent membrane fusion. The presence of the gap junction protein connexin 43 at areas of contact between prefusing rat L6 myoblasts was established by immunofluorescent staining. These myoblasts were dye-coupled, as demonstrated by the use of the scrape-loading/dye transfer technique. L6 myoblast dye coupling was reversibly blocked by heptanol in short term experiments as well as after chronic treatment. After a single addition of 3.5 mM heptanol, gap junctions remained blocked for up to 8 hours, then this inhibitory effect decreased gradually, likely because the alcohol was evaporated. Changing heptanol solutions every 8 hours during the time course of L6 differentiation resulted in a lasting drastic inhibition of myoblast fusion. We further investigated the effect of heptanol and of other uncoupling agents on the differentiation of primary cultures of embryonic chicken myoblasts. These cells are transiently coupled by gap junctions before myoblast fusion and prolonged application of heptanol, octanol and 18-beta-glycyrrhetinic acid also inhibited their fusion. The effect of heptanol and octanol was neither due to a cytotoxic effect nor to a modification of cell proliferation. Moreover, heptanol treatment did not alter myoblast alignment and adhesion. Taken together these observations suggest that intercellular communication might be a necessary step for myoblast fusion.

MeSH Terms
Alcohols/pharmacology,toxicity Animals Cadherins/analysis Cell Adhesion Molecules, Neuronal/analysis Cell Communication/drug effects Cell Differentiation Cell Fusion/physiology Cell Line Cell Survival Cells, Cultured Chick Embryo Connexin 43/analysis Creatine Kinase/metabolism Gap Junctions/drug effects,physiology Glycyrrhetinic Acid/pharmacology Muscles/cytology,physiology Octanols/pharmacology,toxicity Rats
Chemicals
Alcohols Cadherins Cell Adhesion Molecules, Neuronal Connexin 43 Octanols Creatine Kinase Glycyrrhetinic Acid
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mège R M
INSERM U 153, CNRS ERS 614, Paris, France.
Goudou D
Giaume C
Nicolet M
Rieger F
Article Info
Journal
Cell adhesion and communication
Abbr.
Cell Adhes Commun
ISSN
1061-5385
Published
1994-08-00
Pages
329-43
Language
English
Region
Switzerland
NLM ID
9417027
Subset
IM
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