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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Ouabain sensitive Na+/K(+)-ATPase content is elevated in mdx mice: implications for the regulation of ions in dystrophic muscle.
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Ouabain sensitive Na+/K(+)-ATPase content is elevated in mdx mice: implications for the regulation of ions in dystrophic muscle.

机译:哇巴因敏感性Na + / K(+)-ATPase含量在mdx小鼠中升高:对营养不良性肌肉中离子的调节具有重要意义。

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摘要

Recent evidence indicates that in dystrophin-deficient muscle, intracellular sodium content (Na(i)) may be elevated and sodium regulation may be altered or impaired. If there is an elevation in Na(i), this could be due to decreased active pumping of sodium from the cell or increased passive influx of sodium. The present study has therefore determined the content of plasma membrane-bound Na+/K(+)-ATPase in the skeletal muscle of mdx mice; a genetically homologous model of Duchenne muscular dystrophy. Measurements were made on muscles from 5-6-month-old mdx mice and age-matched controls of the C57B1/10ScSn strain (n = 9 pairs), using the vanadate-facilitated ouabain-binding technique. The Na+/K(+)-ATPase concentration per unit weight increased by 2.3-fold in the longissimus dorsi and 1.4-fold in the gastrocnemius of mdx mice compared with controls. The increase in Na+/K(+)-ATPase content is of similar magnitude to the previously reported increase in ouabain-sensitive Na+/K(+)-ATPase activity in mdx muscle, suggesting that this elevated enzyme activity occurs largely through an increase in its concentration. This compensatory increase in the main regulator of internal sodium is likely to occur in an attempt to maintain homeostasis. Nevertheless, the elevated pump concentration is unable to compensate entirely for the increased Na(i). These results are consistent with a previously proposed hypothesis that sodium regulation is abnormal in dystrophin deficient muscles, and also that cell death in these muscles may be due to abnormal regulation of cell volume.
机译:最近的证据表明,在肌营养不良蛋白缺乏的肌肉中,细胞内钠含量(Na(i))可能会升高,并且钠调节可能会改变或受损。如果Na(i)升高,则可能是由于钠从细胞中主动泵送的减少或钠的被动流入增加了。因此,本研究确定了mdx小鼠骨骼肌中质膜结合的Na + / K(+)-ATPase的含量。杜兴氏肌营养不良症的遗传同源模型。使用钒酸盐促进的哇巴因结合技术,对5-6个月大mdx小鼠的肌肉和年龄匹配的C57B1 / 10ScSn菌株(n = 9对)进行了测量。与对照组相比,每单位体重的Na + / K(+)-ATPase浓度在背最长肌中增加2.3倍,在腓肠肌腓肠肌中增加1.4倍。 Na + / K(+)-ATPase含量的增加与之前报道的mdx肌肉中哇巴因敏感的Na + / K(+)-ATPase活性的增加具有相似的幅度,表明这种升高的酶活性主要是通过增加它的集中度。内部钠的主要调节剂的这种补偿性增加可能是为了维持体内平衡而发生的。然而,提高的泵浓度无法完全补偿增加的Na(i)。这些结果与先前提出的假设有关,即在肌营养不良蛋白缺乏的肌肉中钠调节异常,并且这些肌肉中的细胞死亡可能是由于细胞体积的异常调节所致。

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