Quadriceps myopathy (QM) is a rare form of muscle disease characterized by pathological changes predominately localized to the quadriceps. Although numerous inheritance patterns have been implicated in QM, several QM patients harbor deletions in dystrophin. Two defined deletions predicted loss of functional spectrin-like repeats 17 and 18. Spectrin-like repeat 17 participates in actin-filament binding, and thus we hypothesized that disruption of a dystrophin-cytoplasmic actin interaction might be one of the mechanisms underlying QM. To test this hypothesis, we generated mice deficient for β(cyto)-actin in skeletal muscles (Actb-msKO). Actb-msKO mice presented with a progressive increase in the proportion of centrally nucleated fibers in the quadriceps, an approximately 50% decrease in dystrophin protein expression without alteration in transcript levels, deficits in repeated maximal treadmill tests, and heightened sensitivity to eccentric contractions. Collectively, these results suggest that perturbing a dystrophin-β(cyto)-actin linkage decreases dystrophin stability, which results in a QM, and implicates β(cyto)-actin as a possible candidate gene in QM pathology.
Quadriceps myopathy caused by skeletal muscle-specific ablation of β(cyto)-actin.
股四头肌病是由骨骼肌特异性β(细胞)-肌动蛋白消融引起的
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作者:Prins Kurt W, Call Jarrod A, Lowe Dawn A, Ervasti James M
| 期刊: | Journal of Cell Science | 影响因子: | 3.600 |
| 时间: | 2011 | 起止号: | 2011 Mar 15; 124(Pt 6):951-7 |
| doi: | 10.1242/jcs.079848 | 研究方向: | 细胞生物学 |
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