Terracciano C M, MacLeod K T
Imperial College School of Medicine, National Heart and Lung Institute, London, England.
Biophys J. 1997 Mar;72(3):1319-26. doi: 10.1016/S0006-3495(97)78778-2.
This study investigates the contribution of Ca2+ entry via sarcolemmal (SL) Ca2+ channels to the Ca2+ transient and its relationship with sarcoplasmic reticulum (SR) Ca2+ content during steady-state contraction in guinea pig and rat ventricular myocytes. The action potential clamp technique was used to obtain physiologically relevant changes in membrane potential. A method is shown that allows calculation of Ca2+ entry through the SL Ca2+ channels by measuring Cd(2+)-sensitive current during the whole cardiac cycle. SR Ca2+ content was calculated from caffeine-induced transient inward current. In guinea pig cardiac myocytes stimulated at 0.5 Hz and 0.2 Hz, Ca2+ entry through SL Ca2+ channels during a cardiac cycle was approximately 30% and approximately 50%, respectively, of the SR Ca2+ content. In rat myocytes Ca2+ entry via SL Ca2+ channels at 0.5 Hz was approximately 3.5% of the SR Ca2+ content. In the presence of 500 nM thapsigargin Ca2+ entry via SL Ca2+ channels in guinea pig cardiac cells was 39% greater than in controls, suggesting a larger contribution of this mechanism to the Ca2+ transient when the SR is depleted of Ca2+. These results provide quantitative support to the understanding of the relationship between Ca2+ entry and the SR Ca2+ content and may help to explain differences in the Ca2+ handling observed in different species.
本研究调查了豚鼠和大鼠心室肌细胞在稳态收缩过程中,通过肌膜(SL)钙通道的钙离子内流对钙瞬变的贡献及其与肌浆网(SR)钙含量的关系。采用动作电位钳技术来获得膜电位的生理相关变化。展示了一种通过测量整个心动周期中镉(2+)敏感电流来计算通过SL钙通道的钙离子内流的方法。SR钙含量由咖啡因诱导的瞬时内向电流计算得出。在以0.5Hz和0.2Hz刺激的豚鼠心肌细胞中,一个心动周期内通过SL钙通道的钙离子内流分别约为SR钙含量的30%和约50%。在大鼠心肌细胞中,以0.5Hz通过SL钙通道的钙离子内流约为SR钙含量的3.5%。在存在500 nM毒胡萝卜素的情况下,豚鼠心脏细胞中通过SL钙通道的钙离子内流比对照组大39%,这表明当SR钙耗尽时,该机制对钙瞬变的贡献更大。这些结果为理解钙离子内流与SR钙含量之间的关系提供了定量支持,并可能有助于解释在不同物种中观察到的钙离子处理差异。