Huchet C, Léoty C
Laboratoire de physiologie générale, Unité de recherche associée no. 1340, Centre national de la recherche scientifique, Faculté des sciences et des techniques, Nantes, France.
Can J Physiol Pharmacol. 1994 Aug;72(8):833-40. doi: 10.1139/y94-118.
The effects of cyclopiazonic acid (CPA) on twitch force, calcium (Ca2+) uptake and release by the sarcoplasmic reticulum (SR), and Ca2+ sensitivity of contractile apparatus were studied using intact and chemically skinned cremaster fibers and compared with those on the extensor digitorum longus and soleus. In cremaster muscles treated with CPA (0.5-5 microM) a potentiation of the twitch was observed, associated with an increase in time to peak and in time of relaxation. In Triton-skinned fibers, CPA, at concentrations less than 10 microM, exerted no significant effect on the contractile apparatus of either slow- or fast-twitch fibers. In slow-twitch fibers, a dose-dependent increase in Ca2+ sensitivity was associated with a decrease in maximal tension, at CPA concentrations > 10 microM. In saponin-skinned fibers, during the uptake phase, CPA at > 10 microM induced a dose-dependent decrease in caffeine contracture. The possibility of an action on the SR Ca2+ release channel was excluded by testing the effect of CPA during the releasing phase. The enhancing effect of CPA (0.5-5 microM) on mechanical activity could be explained by an inhibition of the SR Ca2+ ATPase in skeletal muscle cells without an effect on the contractile proteins. Our results strongly suggest that CPA (< 10 microM) has a highly specific effect on the SR Ca2+ pump in the fast- and slow-twitch fibers and therefore could be a good tool to study the mechanisms of Ca2+ regulation in skeletal muscles.(ABSTRACT TRUNCATED AT 250 WORDS)
使用完整的和化学去膜的提睾肌纤维研究了环匹阿尼酸(CPA)对单收缩力、肌浆网(SR)钙(Ca2+)摄取和释放以及收缩装置Ca2+敏感性的影响,并与对趾长伸肌和比目鱼肌的影响进行了比较。在用CPA(0.5 - 5微摩尔)处理的提睾肌中,观察到单收缩增强,同时达到峰值的时间和舒张时间增加。在经曲拉通去膜的纤维中,浓度低于10微摩尔的CPA对慢肌或快肌纤维的收缩装置均无显著影响。在慢肌纤维中,当CPA浓度>10微摩尔时,Ca2+敏感性呈剂量依赖性增加,同时最大张力降低。在皂素去膜的纤维中,在摄取阶段,>10微摩尔的CPA诱导咖啡因挛缩呈剂量依赖性降低。通过测试CPA在释放阶段的作用排除了其作用于SR Ca2+释放通道的可能性。CPA(0.5 - 5微摩尔)对机械活性的增强作用可以用其抑制骨骼肌细胞中的SR Ca2+ ATP酶来解释,而对收缩蛋白无影响。我们的结果强烈表明,CPA(<10微摩尔)对快肌和慢肌纤维中的SR Ca2+泵具有高度特异性作用,因此可能是研究骨骼肌中Ca2+调节机制的良好工具。(摘要截短于250字)