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首页> 外文期刊>American Journal of Physiology >Calcium phosphate precipitation in the sarcoplasmic reticulum reduces action potential-mediated Ca2+ release in mammalian skeletal muscle.
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Calcium phosphate precipitation in the sarcoplasmic reticulum reduces action potential-mediated Ca2+ release in mammalian skeletal muscle.

机译:肌浆网中的磷酸钙沉淀减少了哺乳动物骨骼肌中动作电位介导的Ca2 +释放。

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摘要

During vigorous exercise, Pi concentration levels within the cytoplasm of fast-twitch muscle fibers may reach > or =30 mM. Cytoplasmic Pi may enter the sarcoplasmic reticulum (SR) and bind to Ca2+ to form a precipitate (CaPi), thus reducing the amount of releasable Ca2+. Using mechanically skinned rat fast-twitch muscle fibers, which retain the normal action potential-mediated Ca2+ release mechanism, we investigated the consequences of Pi exposure on normal excitation-contraction coupling. The total amount of Ca2+ released from the SR by a combined caffeine/low-Mg2+ concentration stimulus was reduced by approximately 20%, and the initial rate of force development slowed after 2-min exposure to 30 mM Pi (with or without the presence creatine phosphate). Peak (50 Hz) tetanic force was also reduced (by approximately 25% and approximately 45% after 10 and 30 mM Pi exposure, respectively). Tetanic force responses produced after 30 mM Pi exposure were nearly identical to those observed in the same fiber after depletion of total SR Ca2+ by approximately 35%. Ca2+ content assays revealed that the total amount of Ca2+ in the SR was not detectably changed by exposure to 30 mM Pi, indicating that Ca2+ had not leaked from the SR but instead formed a precipitate with the Pi, reducing the amount of available Ca2+ for rapid release. These results suggest that CaPi precipitation that occurs within the SR could contribute to the failure of Ca2+ release observed in the later stages of metabolic muscle fatigue. They also demonstrate that the total amount of Ca2+ stored in the SR cannot drop substantially below the normal endogenous level without reducing tetanic force responses.
机译:在剧烈运动期间,快肌纤维细胞质中的Pi浓度水平可能达到>或= 30 mM。细胞质Pi可能进入肌质网(SR)并与Ca2 +结合形成沉淀物(CaPi),从而减少了可释放的Ca2 +数量。使用保留了正常动作电位介导的Ca2 +释放机制的机械表皮的大鼠快速抽搐肌纤维,我们研究了Pi暴露对正常的激发-收缩耦合的影响。混合咖啡因/低Mg2 +浓度刺激从SR释放的Ca2 +总量减少了约20%,暴露于30 mM Pi(有或没有肌酸的情况)2分钟后,最初的力量发展速度减慢了。磷酸盐)。峰值(50 Hz)强直作用力也降低了(分别在10和30 mM Pi暴露后分别降低了约25%和约45%)。暴露30 mM Pi后产生的强直作用力响应与将总SR Ca2 +消耗约35%后在同一根纤维中观察到的力响应几乎相同。 Ca2 +含量测定表明,暴露于30 mM Pi时未检测到SR中Ca2 +的总量发生变化,这表明Ca2 +并未从SR泄漏,而是与Pi形成沉淀,从而减少了可利用的Ca2 +的量,从而迅速释放。这些结果表明,SR内发生的CaPi沉淀可能导致在代谢性肌肉疲劳的后期观察到Ca2 +释放失败。他们还表明,储存在SR中的Ca2 +总量不能在不降低强直作用力响应的情况下基本降至正常的内源水平以下。

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