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Regulation of a muscle-specific transgene by retinoic acid
Y Xiao1, U Grieshammer, N Rosenthal
1Cardiovascular Research Center, Massachusetts General Hospital-East, Charlestown 02129, USA.
Abstract:
Retinoic acid (RA) has been shown to have variable effects on myogenic differentiation in cell culture. The application of RA on primary cultures of embryonic somites, limb buds, and neonatal limbs inhibited myogenic differentiation in a dose-dependent way as indicated by the repression of: (a) myotube formation, (b) myosin heavy chain protein accumulation, (c) myosin light chain (MLC) 1/3, alpha sk-actin and myogenic factor transcript expression. Expression of retinoic acid receptors (RAR) was also affected by RA treatment, specifically RAR gamma transcripts were induced. To further understand the pleiotropic action of RA on myogenesis, we took advantage of two muscle-specific transgene markers which consisted of CAT reporter genes driven by regulatory elements either from the myosin light chain 1/3 locus (MLC-CAT) or the alpha-skeletal actin gene (alpha sk actin-CAT). RA inhibited MLC-CAT transgene but not alpha sk actin-CAT transgene expression in primary cultures from these mice. Analysis of MLC-CAT expression in transgenic mouse primary cultures and in stably transfected C2C12 cells demonstrated that repression of MLC-CAT activity by RA was dependent upon diffusible factors in chick embryo extract. We hypothesize that during development, the pleiotropic effects of RA on myogenesis do not depend solely on the distribution and concentration of RA itself, but are also influenced by extracellular signals in the embryonic environment.
Insights
Retinoic acid (RA) inhibits muscle cell differentiation, impacting gene expression and protein accumulation. Its effects on myogenesis are modulated by extracellular signals, not just RA concentration.
Area of Science:
- Developmental Biology
- Molecular Biology
- Cell Biology
Background:
- Retinoic acid (RA) exhibits variable effects on myogenic differentiation in cell culture.
- Understanding RA's role in myogenesis is crucial for developmental biology research.
Purpose of the Study:
- To investigate the pleiotropic actions of retinoic acid (RA) on myogenic differentiation.
- To elucidate the mechanisms underlying RA's influence on muscle development.
Main Methods:
- Primary cultures of embryonic and neonatal tissues were treated with RA.
- Muscle-specific transgene markers (MLC-CAT and alpha sk actin-CAT) were utilized.
- Gene and protein expression analysis, including transcript levels of myogenic factors, was performed.
Main Results:
- RA inhibited myotube formation, myosin heavy chain accumulation, and transcript expression of key myogenic factors in a dose-dependent manner.
- RA treatment induced retinoic acid receptor gamma (RAR gamma) transcripts.
- RA repressed MLC-CAT transgene expression but not alpha sk actin-CAT transgene expression, indicating locus-specific regulation.
Conclusions:
- RA's inhibitory effects on myogenesis are mediated by repression of specific gene regulatory elements.
- The observed repression of MLC-CAT activity by RA is dependent on diffusible factors present in embryonic extracts.
- Developmental effects of RA on myogenesis are influenced by both RA concentration and extracellular embryonic signals.