Turner P R, Fong P Y, Denetclaw W F, Steinhardt R A
Department of Molecular and Cell Biology, University of California, Berkeley 94720.
J Cell Biol. 1991 Dec;115(6):1701-12. doi: 10.1083/jcb.115.6.1701.
We examined pathways which might result in the elevated resting free calcium [( Ca2+]i) levels observed in dystrophic mouse (mdx) skeletal muscle fibers and myotubes and human Duchenne muscular dystrophy myotubes. We found that mdx fibers, loaded with the calcium indicator fura-2, were less able to regulate [Ca2+]i levels in the region near the sarcolemma. Increased calcium influx or decreased efflux could lead to elevated [Ca2+]i levels. Calcium transient decay times were identical in normal and mdx fibers if resting [Ca2+]i levels were similar, suggesting that calcium-sequestering mechanisms are not altered in dystrophic muscle, but are slowed by the higher resting [Ca2+]i. The defect appears to be specific for calcium since resting free sodium levels and sodium influx rates in the absence of Na+/K(+)-ATPase activity were identical in normal and dystrophic cells when measured with sodium-binding benzofuran isophthalate. Calcium leak channels, whose opening probabilities (Po) were voltage independent, could be the major calcium influx pathway at rest. We have shown previously that calcium leak channel Po is significantly higher in dystrophic myotubes. These leak channels were selective for calcium over sodium under physiological conditions. Agents that increased leak channel activity also increased [Ca2+]i in fibers and myotubes. These results suggest that increased calcium influx, as a result of increased leak channel activity, could result in the elevated [Ca2+]i in dystrophic muscle.
我们研究了可能导致在营养不良小鼠(mdx)骨骼肌纤维、肌管以及人类杜氏肌营养不良症肌管中观察到的静息游离钙[Ca2+]i水平升高的途径。我们发现,用钙指示剂fura - 2装载的mdx纤维在调节肌膜附近区域的[Ca2+]i水平方面能力较弱。钙内流增加或外流减少可能导致[Ca2+]i水平升高。如果静息[Ca2+]i水平相似,正常纤维和mdx纤维中的钙瞬变衰减时间相同,这表明营养不良肌肉中的钙螯合机制没有改变,但由于静息[Ca2+]i较高而减慢。该缺陷似乎对钙具有特异性,因为在用结合钠的苯并呋喃间苯二甲酸测量时,正常细胞和营养不良细胞在缺乏Na+/K(+) - ATP酶活性时的静息游离钠水平和钠内流速率相同。钙泄漏通道的开放概率(Po)与电压无关,可能是静息时主要的钙内流途径。我们之前已经表明,营养不良肌管中的钙泄漏通道Po显著更高。在生理条件下,这些泄漏通道对钙的选择性高于钠。增加泄漏通道活性的试剂也会增加纤维和肌管中的[Ca2+]i。这些结果表明,由于泄漏通道活性增加导致的钙内流增加可能导致营养不良肌肉中[Ca2+]i升高。