首页> 美国卫生研究院文献>The Journal of General Physiology >Simulated calcium current can both cause calcium loading in and trigger calcium release from the sarcoplasmic reticulum of a skinned canine cardiac Purkinje cell
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Simulated calcium current can both cause calcium loading in and trigger calcium release from the sarcoplasmic reticulum of a skinned canine cardiac Purkinje cell

机译:模拟的钙电流既可引起钙负载又可引起钙离子从皮肤的犬心脏浦肯野细胞的肌浆网释放

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摘要

Skinned canine cardiac Purkinje cells were stimulated by regularly repeated microinjection-aspiration sequences that were programmed to simulate the fast initial component of the transsarcolemmal Ca2+ current and the subsequent slow component corresponding to noninactivating Ca2+ channels. The simulated fast component triggered a tension transient through Ca2+-induced release of Ca2+ from the sarcoplasmic reticulum (SR). The simulated slow component did not affect the tension transient during which it was first introduced but it potentiated the subsequent transients. The potentiation was not observed when the SR function had been destroyed by detergent. The potentiation decreased progressively when the slow component was separated by an increasing time interval from the fast component. The potentiation was progressive over several beats under conditions that decreased the rate of Ca2+ accumulation into the SR (deletion of calmodulin from the solutions; a decrease of the temperature from 22 to 12 degrees C). In the presence of a slow component, an increase of frequency caused a positive staircase, and the introduction of an extrasystole caused a postextrasystolic potentiation. There was a negative staircase and no postextrasystolic potentiation in the absence of a slow component. These results can be explained by a time- and Ca2+- dependent functional separation of the release and accumulation processes of the SR, rather than by Ca2+ circulation between anatomically distinct loading and release compartments. The fast initial component of transsarcolemmal Ca2+ current would trigger Ca2+ release, whereas the slow component would load the SR with an amount of Ca2+ available for release during the subsequent tension transients.
机译:用规则重复的显微注射-抽吸序列刺激皮肤的犬心脏浦肯野细胞,该序列被编程为模拟跨肌膜Ca2 +电流的快速初始成分和随后的与非灭活Ca2 +通道相对应的缓慢成分。模拟的快速成分通过Ca2 +诱导的从肌浆网(SR)释放Ca2 +触发了张力瞬变。模拟的慢速分量在首次引入时不会影响张力瞬态,但会增强后续的瞬态。当去污剂破坏了SR功能时,未观察到增强作用。当慢组分与快组分分开增加的时间间隔时,电位逐渐降低。在降低Ca2 +积累到SR的速率(溶液中钙调蛋白的缺失;温度从22到12摄氏度的降低)的条件下,增强作用经过了几次搏动。在存在慢速成分的情况下,频率增加导致正阶梯,而收缩前期的引入引起收缩后期增强。在没有缓慢成分的情况下,有一个负楼梯,没有收缩后收缩增强。这些结果可以通过SR的释放和积累过程的时间和Ca2 +依赖性功能分离来解释,而不是通过解剖学上不同的加载和释放部分之间的Ca2 +循环来解释。跨膜膜Ca2 +电流的快速初始成分将触发Ca2 +释放,而缓慢成分将使SR充满一定量的Ca2 +,可在随后的张力瞬变期间释放。

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