Expansion of revertant fibers in dystrophic mdx muscles reflects activity of muscle precursor cells and serves as an index of muscle regeneration
- 1 July 2006
- journal article
- research article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 119 (13), 2679-2687
- https://doi.org/10.1242/jcs.03000
Abstract
Duchenne muscular dystrophy and the mdx mouse myopathies reflect a lack of dystrophin in muscles. However, both contain sporadic clusters of revertant fibers (RFs) that express dystrophin. RF clusters expand in size with age in mdx mice. To test the hypothesis that the expansion of clusters is achieved through the process of muscle degeneration and regeneration, we analyzed muscles of mdx mice in which degeneration and regeneration were inhibited by the expression of micro-dystrophins or utrophin transgenes. Postnatal RF expansion was diminished in direct correlation to the protective effect of the transgene expression. Similarly, expansion of RFs was inhibited when muscle regeneration was blocked by irradiation. However, in irradiated muscles, irradiation-tolerant quiescent muscle precursor cells reactivated by notexin effectively restored RF expansion. Our observations demonstrate that revertant events occur initially within a subset of muscle precursor cells. The proliferation of these cells, as part of the regeneration process, leads to the expansion of RF clusters within degenerating muscles. This expansion of revertant clusters depicts the cumulative history of regeneration, thus providing a useful index for functional evaluation of therapies that counteract muscle degeneration.Keywords
This publication has 37 references indexed in Scilit:
- Stem Cell Function, Self-Renewal, and Behavioral Heterogeneity of Cells from the Adult Muscle Satellite Cell NicheCell, 2005
- Micro-dystrophin cDNA ameliorates dystrophic phenotypes when introduced into mdx mice as a transgeneBiochemical and Biophysical Research Communications, 2002
- Massive Idiosyncratic Exon Skipping Corrects the Nonsense Mutation in Dystrophic Mouse Muscle and Produces Functional Revertant Fibers by Clonal ExpansionThe Journal of cell biology, 2000
- Functional Rescue of the Sarcoglycan Complex in the BIO 14.6 Hamster Using δ-Sarcoglycan Gene TransferMolecular Cell, 1998
- Amelioration of the dystrophic phenotype of mdx mice using a truncated utrophin transgeneNature, 1996
- Absence of correlation between utrophin localization and quantity and the clinical severity in Duchenne/Becker dystrophiesAmerican Journal of Medical Genetics, 1995
- X‐Irradiation improves mdx mouse muscle as a model of myofiber loss in DMDMuscle & Nerve, 1991
- Specificity of dystrophin analysis improved with monoclonal antibodiesThe Lancet, 1990
- Transcription of the dystrophin gene in Duchenne muscular dystrophy muscleFEBS Letters, 1989
- Complete cloning of the duchenne muscular dystrophy (DMD) cDNA and preliminary genomic organization of the DMD gene in normal and affected individualsCell, 1987