首页> 美国卫生研究院文献>Frontiers in Physiology >Cholesterol removal from adult skeletal muscle impairs excitation–contraction coupling and aging reduces caveolin-3 and alters the expression of other triadic proteins
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Cholesterol removal from adult skeletal muscle impairs excitation–contraction coupling and aging reduces caveolin-3 and alters the expression of other triadic proteins

机译:从成年骨骼肌中去除胆固醇会削弱兴奋-收缩耦合并且衰老会降低Caveolin-3并改变其他三联蛋白的表达

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摘要

Cholesterol and caveolin are integral membrane components that modulate the function/location of many cellular proteins. Skeletal muscle fibers, which have unusually high cholesterol levels in transverse tubules, express the caveolin-3 isoform but its association with transverse tubules remains contentious. Cholesterol removal impairs excitation–contraction (E–C) coupling in amphibian and mammalian fetal skeletal muscle fibers. Here, we show that treating single muscle fibers from adult mice with the cholesterol removing agent methyl-β-cyclodextrin decreased fiber cholesterol by 26%, altered the location pattern of caveolin-3 and of the voltage dependent calcium channel Cav1.1, and suppressed or reduced electrically evoked Ca2+ transients without affecting membrane integrity or causing sarcoplasmic reticulum (SR) calcium depletion. We found that transverse tubules from adult muscle and triad fractions that contain ~10% attached transverse tubules, but not SR membranes, contained caveolin-3 and Cav1.1; both proteins partitioned into detergent-resistant membrane fractions highly enriched in cholesterol. Aging entails significant deterioration of skeletal muscle function. We found that triad fractions from aged rats had similar cholesterol and RyR1 protein levels compared to triads from young rats, but had lower caveolin-3 and glyceraldehyde 3-phosphate dehydrogenase and increased Na+/K+-ATPase protein levels. Both triad fractions had comparable NADPH oxidase (NOX) activity and protein content of NOX2 subunits (p47phox and gp91phox), implying that NOX activity does not increase during aging. These findings show that partial cholesterol removal impairs E–C coupling and alters caveolin-3 and Cav1.1 location pattern, and that aging reduces caveolin-3 protein content and modifies the expression of other triadic proteins. We discuss the possible implications of these findings for skeletal muscle function in young and aged animals.
机译:胆固醇和小窝蛋白是不可或缺的膜成分,可调节许多细胞蛋白的功能/位置。在横管中胆固醇含量异常高的骨骼肌纤维表达了caveolin-3亚型,但与横管的联系仍然存在争议。去除胆固醇会破坏两栖和哺乳动物胎儿骨骼肌纤维的兴奋-收缩(EC)耦合。在这里,我们表明用胆固醇去除剂甲基-β-环糊精处理成年小鼠的单条肌纤维可使纤维胆固醇降低26%,改变了Caveolin-3和电压依赖性钙通道Cav1.1的定位方式,并抑制了或减少电诱发的Ca 2 + 瞬变,而不会影响膜的完整性或引起肌浆网(SR)的钙耗竭。我们发现来自成年肌肉和三联体部分的横向小管含有〜10%附着的横向小管,但没有SR膜,含有caveolin-3和Cav1.1。两种蛋白质均被分成高度富含胆固醇的耐洗涤剂的膜部分。衰老使骨骼肌功能明显恶化。我们发现,老年大鼠的三联体组分与年轻大鼠的三联体具有相似的胆固醇和RyR1蛋白水平,但具有较低的caveolin-3和甘油醛3-磷酸脱氢酶,且Na + / K 增加+ -ATPase蛋白水平。这两个三联体级分均具有相当的NADPH氧化酶(NOX)活性和NOX2亚基(p47 phox 和gp91 phox )的蛋白质含量,这表明NOX活性在衰老过程中不会增加。这些发现表明,胆固醇的部分去除会损害E-C偶联并改变小窝蛋白3和Cav1.1的定位方式,而衰老会降低小窝蛋白3的蛋白质含量并修饰其他三联体蛋白的表达。我们讨论了这些发现对年轻和成年动物骨骼肌功能的可能影响。

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