Related Experiment Videos
Enhanced expression of myogenic regulatory genes in aging skeletal muscle
A Musarò1, M G Cusella De Angelis, A Germani
1Istituto Istologia ed Embriologia Generale, Università di Roma La Sapienza, Italy.
Abstract:
MyoD, myogenin, myf-5, and MRF4, belonging to the family of basic helix-loop-helix (bHLH) myogenic regulatory factors (MRFs), control muscle cell differentiation, in concert with other transcription factors such as MEF-2, yet their role in age-related skeletal muscle alteration has not been addressed. We here report that MyoD and myogenin transcripts are expressed at high levels in the hind limb muscles of newborn mice and their level of expression continuously declines throughout postnatal life to become virtually undetectable in the adult mouse. However, these transcripts are again expressed at high levels in the muscles of older mice. MRF4 transcript, on the other hand, is present at a constant level throughout the life span of the animal. Conversely, the expressions of myf-5 and MEF-2C, components of the autoregulatory loop for the activation of bHLH gene expression, conspicuously increase in adult and senile muscle. In order to establish whether these transcripts are functioning in the aged muscle we investigated the expression of bHLH inhibitory factor Id mRNA showing that it does not present significant changes during aging. Immunofluorescence analysis with an anti-myogenin antibody revealed nuclear accumulation of the protein in the muscle fibers of old, but not of adult, mice. Muscle-specific genes transactivated by MyoD and myogenin such as AChR, MLC, and MCK are also up-regulated during aging, albeit at a lower level. Significant changes in the size and ratio of type I/type II fibers are detectable in senile muscle. These findings show that all members of the MRF family are expressed to a high extent and are likely active in senile muscle. It is conceivable that these changes might operate as a compensatory mechanism in maintaining the expression of differentiated muscle products in senile muscle at a steady-state level.
Insights
Myogenic regulatory factors (MRFs) like MyoD and myogenin are re-expressed in older mice muscles, suggesting a compensatory role in aging skeletal muscle. These changes may help maintain muscle function as animals age.
Area of Science:
- Muscle biology
- Aging research
- Molecular genetics
Background:
- Basic helix-loop-helix (bHLH) myogenic regulatory factors (MRFs) control muscle differentiation.
- The role of MRFs in age-related skeletal muscle changes is not well understood.
Purpose of the Study:
- To investigate the expression and potential function of MRFs in aging skeletal muscle.
- To determine if MRFs contribute to age-related alterations in muscle.
Main Methods:
- Quantitative analysis of MyoD, myogenin, myf-5, and MRF4 transcript levels in mouse muscle across different age groups.
- Immunofluorescence staining to detect myogenin protein.
- Analysis of muscle-specific gene expression (AChR, MLC, MCK) and fiber type changes.
Main Results:
- MyoD and myogenin transcripts, initially high in newborns, decline but re-emerge in older mice.
- Myf-5 and MEF-2C expression increases in adult and senile muscle.
- Myogenin protein accumulates in the nuclei of muscle fibers in old mice.
- Muscle-specific genes and changes in fiber type composition are observed in aging muscle.
Conclusions:
- All MRF family members are expressed and likely active in senile muscle.
- The observed changes in MRF expression may represent a compensatory mechanism to maintain differentiated muscle products in aging muscle.