首页> 外文期刊>The Journal of general physiology >Cross-signaling between L-type Ca2+ channels and ryanodine receptors in rat ventricular myocytes.
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Cross-signaling between L-type Ca2+ channels and ryanodine receptors in rat ventricular myocytes.

机译:大鼠心室肌细胞中L型Ca2 +通道与ryanodine受体之间的交叉信号。

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Calcium-mediated cross-signaling between the dihydropyridine (DHP) receptor, ryanodine receptor, and Na(+)-Ca2+ exchanger was examined in single rat ventricular myocytes where the diffusion distance of Ca2+ was limited to 50 nm by dialysis with high concentrations of Ca2+ buffers. Dialysis of the cell with 2 mM Ca(2+)- indicator dye, Fura-2, or 2 mM Fura-2 plus 14 mM EGTA decreased the magnitude of ICa-triggered intracellular Ca2+ transients (Cai-transients) from 500 to 20-100 nM and completely abolished contraction, even though the amount of Ca2+ released from the sarcoplasmic reticulum remained constant (approximately 140 microM). Inactivation kinetics of ICa in highly Ca(2+)-buffered cells was retarded when Ca2+ stores of the sarcoplasmic reticulum (SR) were depleted by caffeine applied 500 ms before activation of ICa, while inactivation was accelerated if caffeine-induced release coincided with the activation of ICa. Quantitative analysis of these data indicate that the rate of inactivation of ICa was linearly related to SR Ca(2+)-release and reduced by 67% when release was absent. Thapsigargin, abolishing SR release, suppressed the effect of caffeine on the inactivation kinetics of ICa. Caffeine-triggered Ca(2+)-release, in the absence of Ca2+ entry through the Ca2+ channel (using Ba2+ as a charge carrier), caused rapid inactivation of the slowly decaying Ba2+ current. Since Ba2+ does not release Ca2+ but binds to Fura-2, it was possible to calibrate the fluorescence signals in terms of equivalent cation charge. Using this procedure, the amplification factor of ICa-induced Ca2+ release was found to be 17.6 +/- 1.1 (n = 4). The Na(+)-Ca2+ exchange current, activated by caffeine-induced Ca2+ release, was measured consistently in myocytes dialyzed with 0.2 but not with 2 mM Fura-2. Our results quantify Ca2+ signaling in cardiomyocytes and suggest the existence of a Ca2+ microdomain which includes the DHP/ ryanodine receptors complex, but excludes the Na(+)-Ca2+ exchanger. This microdomain appears to be fairly inaccessible to high concentrations of Ca2+ buffers.
机译:钙介导的二氢吡啶(DHP)受体,ryanodine受体和Na(+)-Ca2 +交换子之间的交叉信号在单个大鼠心室肌细胞中进行了检查,其中通过高浓度的透析透析将Ca2 +的扩散距离限制为<50 nm。 Ca2 +缓冲液。用2 mM Ca(2 +)-指示剂染料,Fura-2或2 mM Fura-2加14 mM EGTA透析细胞,将ICa触发的细胞内Ca2 +瞬变(Cai瞬变)的幅度从500降低到20-即使从肌浆网释放的Ca2 +量保持恒定(约140 microM),但100 nM并完全消除了收缩。当肌内网(SR)的Ca2 +储存被咖啡因在ICa激活之前500 ms施加的咖啡因耗尽时,ICa在高Ca(2+)缓冲细胞中的失活动力学被延迟,而如果咖啡因诱导的释放与咖啡因同时发生,则失活会加速。激活ICa。这些数据的定量分析表明,ICa的失活速率与SR Ca(2 +)-释放线性相关,当不存在释放时,其降低> 67%。 Thapsigargin消除了SR释放,抑制了咖啡因对ICa失活动力学的影响。在没有Ca2 +通过Ca2 +通道进入(使用Ba2 +作为电荷载体)的情况下,咖啡因触发的Ca(2+)释放导致缓慢衰减的Ba2 +电流快速失活。由于Ba2 +不会释放Ca2 +,但会与Fura-2结合,因此可以根据当量阳离子电荷来校准荧光信号。使用该程序,发现ICa诱导的Ca2 +释放的放大因子为17.6 +/- 1.1(n = 4)。由咖啡因诱导的Ca2 +释放激活的Na(+)-Ca2 +交换电流在用0.2透析但未用2 mM Fura-2透析的心肌细胞中得到一致的测量。我们的结果量化了心肌细胞中的Ca2 +信号传导,并暗示了Ca2 +微域的存在,其中包括DHP / ryanodine受体复合物,但不包括Na(+)-Ca2 +交换子。高浓度的Ca2 +缓冲液似乎很难接近这个微区。

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