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Androgen-dependent impairment of myogenesis in spinal and bulbar muscular atrophy
journal contribution
posted on 2013-07-01, 00:00 authored by A Malena, M Pennuto, C Tezze, G Querin, C D'Ascenzo, V Silani, G Cenacchi, A Scaramozza, S Romito, L Morandi, E Pegoraro, Aaron RussellAaron Russell, G Sorarù, L VerganiSpinal and bulbar muscular atrophy (SBMA) is an inherited neuromuscular disease caused by expansion of a polyglutamine (polyQ) tract in the androgen receptor (AR). SBMA is triggered by the interaction between polyQ-AR and its natural ligands, testosterone and dihydrotestosterone (DHT). SBMA is characterized by the loss of lower motor neurons and skeletal muscle fasciculations, weakness, and atrophy. To test the hypothesis that the interaction between polyQ-AR and androgens exerts cell-autonomous toxicity in skeletal muscle, we characterized the process of myogenesis and polyQ-AR expression in DHT-treated satellite cells obtained from SBMA patients and age-matched healthy control subjects. Treatment with androgens increased the size and number of myonuclei in myotubes from control subjects, but not from SBMA patients. Myotubes from SBMA patients had a reduced number of nuclei, suggesting impaired myotube fusion and altered contractile structures. The lack of anabolic effects of androgens on myotubes from SBMA patients was not due to defects in myoblast proliferation, differentiation or apoptosis. DHT treatment of myotubes from SBMA patients increased nuclear accumulation of polyQ-AR and decreased the expression of interleukin-4 (IL-4) when compared to myotubes from control subjects. Following DHT treatment, exposure of myotubes from SBMA patients with IL-4 treatment rescued myonuclear number and size to control levels. This supports the hypothesis that androgens alter the fusion process in SBMA myogenesis. In conclusion, these results provide evidence of an androgen-dependent impairment of myogenesis in SBMA that could contribute to disease pathogenesis. © 2013 Springer-Verlag Berlin Heidelberg.
History
Journal
Acta NeuropathologicaVolume
126Issue
1Pagination
109 - 121Publisher DOI
ISSN
0001-6322eISSN
1432-0533Publication classification
C Journal article; C1.1 Refereed article in a scholarly journalCopyright notice
2013, Springer-Verlag Berlin HeidelbergUsage metrics
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Categories
Keywords
Science & TechnologyLife Sciences & BiomedicineClinical NeurologyNeurosciencesPathologyNeurosciences & NeurologySpinal and bulbar muscular atrophyAndrogen receptorDihydrotestosteroneMyogenesisInterleukin-4RECESSIVE BULBOSPINAL NEURONOPATHYSKELETAL-MUSCLE PATHOLOGYTRANSGENIC MOUSE MODELKENNEDY-DISEASESATELLITE CELLSTESTOSTERONE REPLACEMENTRECEPTOR GENEEXPRESSIONMUTATIONSOVEREXPRESSIONAdultAnalysis of VarianceAndrogensCase-Control StudiesCell DifferentiationCell ProliferationCells, CulturedDrug InteractionsFemaleHumansHypertrophyIn Situ Nick-End LabelingMaleMicroscopy, Electron, TransmissionMiddle AgedMuscle DevelopmentMuscle Fibers, SkeletalMuscular Atrophy, SpinalMyosinsPeptidesTime FactorsYoung Adult