A genetic model for the study of abnormal nerve-muscle interactions at the level of excitation-contraction coupling: the mutation muscular dysgenesis.

Journal de physiologie Pub Date : 1990-01-01
M Pinçon-Raymond, L García, G Romey, L Houenou, M Lazdunski, F Rieger
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Abstract

Excitation-contraction in muscle fibers are coupled through a complex mechanism involving multiproteic components located at a specialized cellular site, the triadic junction. Triads in normal muscle fiber result from the apposition of sarcoplasmic reticulum citernae and T-tubule and possess strikingly organized ultrastructural elements, bridging both types of membranes, the "junctional feet". Muscular dysgenesis in the mouse is characterized by total muscle inactivity in the developing skeletal muscles due to excitation-contraction uncoupling. Triads have been found to be disorganized with no "junctional feet" and dihydropyridine (DHP) binding sites are decreased with no slow Ca2+ currents, suggesting a basic defect in the excitation-contraction coupling machinery itself. We may hypothesize that muscular dysgenesis results in a marked defect in a functional protein involved in the morphogenesis of the triad and/or directly involved in Ca2+ release for contraction.

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在兴奋-收缩耦合水平上研究异常神经-肌肉相互作用的遗传模型:突变肌肉发育不良。
肌肉纤维的兴奋-收缩是通过一个复杂的机制耦合的,这个机制涉及位于一个特殊的细胞部位的多种蛋白质成分,即三元连接。正常肌纤维中的三联体是由肌浆网和t小管相邻形成的,具有非常有组织的超微结构成分,连接这两种膜,即“连接脚”。小鼠肌肉发育不良的特点是由于兴奋-收缩解耦导致发育中的骨骼肌完全不活动。三联体被发现是无序的,没有“连接脚”,二氢吡啶(DHP)结合位点减少,没有缓慢的Ca2+电流,这表明兴奋-收缩耦合机制本身存在基本缺陷。我们可以假设,肌肉发育不良导致参与三联体形态发生和/或直接参与Ca2+释放收缩的功能蛋白的明显缺陷。
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