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Activation and propagation of Ca(2+) release during excitation-contraction coupling in atrial myocytes.

机译:心房肌细胞的兴奋收缩耦合过程中Ca(2+)释放的激活和传播。

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摘要

Fast two-dimensional confocal microscopy and the Ca(2+) indicator fluo-4 were used to study excitation-contraction (E-C) coupling in cat atrial myocytes which lack transverse tubules and contain both subsarcolemmal junctional (j-SR) and central nonjunctional (nj-SR) sarcoplasmic reticulum. Action potentials elicited by field stimulation induced transient increases of intracellular Ca(2+) concentration ([Ca(2+)](i)) that were highly inhomogeneous. Increases started at distinct subsarcolemmal release sites spaced approximately 2 microm apart. The amplitude and the latency of Ca(2+) release from these sites varied from beat to beat. Subsarcolemmal release fused to build a peripheral ring of elevated [Ca(2+)](i), which actively propagated to the center of the cells via Ca(2+)-induced Ca(2+) release. Resting myocytes exhibited spontaneous Ca(2+) release events, including Ca(2+) sparks and local (microscopic) or global (macroscopic) [Ca(2+)](i) waves. The microscopic [Ca(2+)](i) waves propagated in a saltatory fashion along the sarcolemma ("coupled" Ca(2+) sparks) revealing the sequential activation of Ca(2+) release sites of the j-SR. Moreover, during global [Ca(2+)](i) waves, Ca(2+) release was evident from individual nj-SR sites. Ca(2+) release sites were arranged in a regular three-dimensional grid as deduced from the functional data and shown by immunostaining of ryanodine receptor Ca(2+) release channels. The longitudinal and transverse distances between individual Ca(2+) release sites were both approximately 2 microm. Furthermore, electron microscopy revealed a continuous sarcotubular network and one peripheral coupling of j-SR with the sarcolemma per sarcomere. The results demonstrate directly that, in cat atrial myocytes, the action potential-induced whole-cell [Ca(2+)](i) transient is the spatio-temporal summation of Ca(2+) release from subsarcolemmal and central sites. First, j-SR sites are activated in a stochastic fashion by the opening of voltage-dependent sarcolemmal Ca(2+) channels. Subsequently, nj-SR sites are activated by Ca(2+)-induced Ca(2+) release propagating from the periphery.
机译:快速二维共聚焦显微镜和Ca(2+)指示剂fluo-4用于研究猫心房肌细胞中的激发-收缩(EC)偶联,该细胞缺乏横向小管,并且同时包含结膜下结膜(j-SR)和中央非结膜( nj-SR)肌质网。现场刺激引起的动作电位诱导高度不均匀的细胞内Ca(2+)浓度([Ca(2 +)](i))的瞬时增加。增长开始于相距约2微米的不同的肌膜下释放部位。从这些站点释放的Ca(2+)的幅度和潜伏期随心跳而变化。肌膜下释放融合以建立升高的[Ca(2 +)](i)的外围环,该环通过Ca(2+)诱导的Ca(2+)释放主动传播到细胞的中心。静止的心肌细胞显示自发的Ca(2+)释放事件,包括Ca(2+)火花和局部(微观)或全局(宏观)[Ca(2 +)](i)波。微观的[Ca(2 +)](i)波沿肌膜以咸化方式传播(“耦合” Ca(2+)火花),揭示了j-SR的Ca(2+)释放部位的顺序激活。此外,在全局[Ca(2 +)](i)波期间,Ca(2+)的释放明显从各个nj-SR站点。 Ca(2+)释放站点被安排在一个规则的三维网格中,从功能数据中推导出来,并通过对瑞丹碱受体Ca(2+)释放通道进行免疫染色来显示。 Ca(2+)释放站点之间的纵向和横向距离都大约为2微米。此外,电子显微镜显示了一个连续的肾小管网络和每个肌节的j-SR与肌膜的一个外围偶联。结果直接表明,在猫心房肌细胞中,动作电位诱导的全细胞[Ca(2 +)](i)瞬态是从肌膜下和中央部位释放Ca(2+)的时空总和。首先,通过打开电压依赖性肌膜Ca(2+)通道以随机的方式激活j-SR网站。随后,nj-SR站点被从外围传播的Ca(2+)诱导的Ca(2+)释放激活。

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