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The role of proteases in excitation-contraction coupling failure in muscular dystrophy

机译:蛋白酶在肌营养不良症激发中的作用

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Duchenne muscular dystrophy (DMD) is one of the most frequent types of muscular dystrophy. Alterations in intracellular calcium (Ca2+) handling are thought to contribute to the disease severity in DMD, possibly due to the activation of Ca2+-activated proteases. The purpose of this study was twofold: 1) to determine whether prolonged excitation-contraction (E-C) coupling disruption following repeated contractions is greater in animals lacking both dystrophin and utrophin (mdxlJtx~'~) compared with mice lacking only dystrophin (mdx); and 2) to assess whether protease inhibition can prevent E-C coupling failure following repeated tetani in these dystrophic mouse models. Excitation-contraction coupling was assessed using Fura-2 ratio, as an index of intracellular free Ca2+ concentration, in response to electrical stimulation of single muscle fibers from the flexor digitorum brevis muscle. Resting Fura-2 ratio was higher in dystrophic compared with control (Con) fibers, but peak Fura-2 ratios during stimulation were similar in dystrophic and Con fibers. One hour after a series of repeated tetani, peak Fura-2 ratios were reduced by 30 ± 5.6%, 23 ± 2%, and 36 ± 3.1% in mdx, mdx/Utr+/~, and mdxl5tx~'~, respectively, with the greatest reduction in mdxlX3x~'~ fibers (P < 0.05). Protease inhibition attenuated this decrease in peak Fura-2 ratio. These data indicate that E-C coupling impairment after repeated contractions is greatest in fibers lacking both dystrophin and utrophin and that prevention of protease activation can mitigate the prolonged E-C coupling impairment. These data further suggest that acute protease inhibition may be useful in reducing muscle weakness in DMD.
机译:Duchenne肌营养不良(DMD)是最常见的肌营养不良症之一。据认为,细胞内钙(CA2 +)处理的改变是有助于DMD中的疾病严重程度,可能是由于CA2 + -Activated蛋白酶的激活。本研究的目的是双重的:1)以确定在缺乏缺乏患者营养蛋白的小鼠(MDX)(MDX ); 2)评估蛋白酶抑制是否可以防止在这些营养不良小鼠模型中重复的Tetani之后的E-C偶联失败。使用Fura-2的比率评估激发收缩偶联,作为细胞内游离Ca2 +浓度的指标,响应于来自屈肌纤维的单肌纤维从屈肌点击肌肉的电刺激。与对照(CON)纤维相比,营养不良呋喃-2比率较高,但在营养和纤维中刺激期间的峰呋喃-2比率相似。一系列重复的Tetani后一小时,峰Fura-2比率降低了30±5.6%,23±2%,分别为36±3.1%,分别为36±3.1%,分别为36±3.1% ,MDXLX3 X〜'纤维最大的降低(P <0.05)。蛋白酶抑制衰减该降低峰呋喃-2比率。这些数据表明,在缺乏Dystophin蛋白和尿酚蛋白的纤维中,缺乏缺乏患者和尿道蛋白的纤维最大,并且预防蛋白酶活化可以减轻延长的E-C耦合损伤。这些数据进一步表明急性蛋白酶抑制可用于降低DMD中的肌肉无力。

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