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首页> 外文期刊>The Journal of Physiology >Analysis of factors affecting Ca 2+-dependent inactivation dynamics of L-type Ca 2+ current of cardiac myocytes in pulmonary vein of rabbit
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Analysis of factors affecting Ca 2+-dependent inactivation dynamics of L-type Ca 2+ current of cardiac myocytes in pulmonary vein of rabbit

机译:影响兔肺静脉心肌细胞L型Ca 2+电流Ca 2+依赖性失活动力学的因素分析

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摘要

L-type Ca 2+ channels (ICaLs) are inactivated by an increase in intracellular [Ca 2+], known as Ca 2+-dependent inactivation (CDI). CDI is also induced by Ca 2+ released from the sarcoplasmic reticulum (SR), known as release-dependent inhibition (RDI). As both CDI and RDI occur in the junctional subsarcolemmal nanospace (JSS), we investigated which factors are involved within the JSS using isolated cardiac myocytes from the main pulmonary vein of the rabbit. Using the whole-cell patch clamp technique, RDI was readily observed with the application of a pre-pulse followed by a test pulse, during which the ICaLs exhibited a decrease in peak current amplitude and a slower inactivation. A fast acting Ca 2+ chelator, 1,2-bis(o-aminophenoxy)ethane-N,N,N′,N′-tetraacetic acid (BAPTA), abolished this effect. As the time interval between the pre-pulse and test pulse increased, the ICaLs exhibited greater recovery and the RDI was relieved. Inhibition of the ryanodine receptor (RyR) or the SR Ca 2+-ATPase (SERCA) greatly attenuated RDI and facilitated ICaL recovery. Removal of extracellular Na +, which inhibits the Na +-Ca 2+ exchange (Incx), greatly enhanced RDI and slowed ICaL recovery, suggesting that Incx critically controls the [Ca 2+] in the JSS. We incorporated the Ca 2+-binding kinetics of the ICaL into a previously published computational model. By assuming two Ca 2+-binding sites in the ICaL, of which one is of low-affinity with fast kinetics and the other is of high-affinity with slower kinetics, the new model was able to successfully reproduce RDI and its regulation by Incx. The model suggests that Incx accelerates Ca 2+ removal from the JSS to downregulate CDI and attenuates SR Ca 2+ refilling. The model may be useful to elucidate complex mechanisms involved in excitation-contraction coupling in myocytes.
机译:L型Ca 2+通道(ICaLs)通过细胞内[Ca 2+]的增加而失活,称为Ca 2+依赖性失活(CDI)。从肌质网(SR)释放的Ca 2+也可诱导CDI,这称为释放依赖性抑制(RDI)。由于CDI和RDI均发生在结膜下膜纳米空间(JSS)中,因此我们使用了来自兔主肺静脉的离体心肌细胞,调查了JSS涉及哪些因素。使用全细胞膜片钳技术,先施加预脉冲再施加测试脉冲即可轻松观察到RDI,在此期间,ICaL表现出峰值电流幅度减小且失活较慢。快速作用的Ca 2+螯合剂1,2-双(邻氨基苯氧基)乙烷-N,N,N',N'-四乙酸(BAPTA)消除了这种作用。随着预脉冲和测试脉冲之间的时间间隔的增加,ICaL表现出更大的恢复能力,RDI得到缓解。抑制ryanodine受体(RyR)或SR Ca 2 + -ATPase(SERCA)大大减弱了RDI,并促进了ICaL的回收。去除细胞外Na +会抑制Na + -Ca 2+交换(Incx),大大增强了RDI并减慢了ICaL的回收,这表明Incx可以严格控制JSS中的[Ca 2+]。我们将ICaL的Ca 2+结合动力学纳入先前发布的计算模型中。通过假设ICaL中有两个Ca 2+结合位点,其中一个具有低亲和力并具有快速的动力学,另一个具有高亲和力并具有较慢的动力学,新模型能够成功复制RDI及其由Incx进行的调节。该模型表明,Incx加快了从JSS去除Ca 2+的速度,从而下调了CDI并减弱了SR Ca 2+的重新填充。该模型对于阐明参与肌细胞兴奋-收缩偶联的复杂机制可能是有用的。

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