首页> 外文期刊>The Journal of Physiology >Ca2+ release-induced inactivation of Ca2+ current in rat ventricular myocytes: evidence for local Ca2+ signalling.
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Ca2+ release-induced inactivation of Ca2+ current in rat ventricular myocytes: evidence for local Ca2+ signalling.

机译:Ca2 +释放引起的大鼠心室肌细胞Ca2 +电流失活:局部Ca2 +信号的证据。

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摘要

1. Inactivation of Ca2+ current (ICa) induced by Ca2+ release from sarcoplasmic reticulum (SR) was studied in single rat ventricular myocytes using whole-cell patch-clamp and indo-1 fluorescence measurement techniques. 2. Depolarizing pulses to 0 mV elicited large Ca2+ transients and ICa with biexponential inactivation kinetics. Varying SR Ca2+ loading by a 20 s pulse of caffeine showed that the fast component of ICa inactivation was dependent on the magnitude of Ca2+ release. 3. Inactivation of ICa induced by Ca2+ release was quantified, independently of voltage and Ca2+ entry, using a function termed fractional inhibition of ICa (FICa). The voltage relation of FICa had a negative slope, resembling that of single-channel Ca2+ current (iCa) rather than the bell-shaped current-voltage (I-V) relation of macroscopic ICa and Ca2+ transients. 4. Intracellular dialysis of myocytes with 10 mM EGTA (150 nM free [Ca2+]) had no effect on ICa inactivation induced by Ca2+ release, despite abolition of Ca2+ transients and cell contraction. Dialysis with 3 or 10 mM BAPTA (180 nM free [Ca2+]) attenuated FICa in a concentration-dependent manner, with greater inhibition at positive than at negative potentials, consistent with more effective buffering of Ca2+ microdomains of smaller iCa. 5. Spatial profiles of [Ca2+] near an opened Ca2+ channel were simulated. [Ca2+] reached submillimolar levels at the mouth of the channel, and dropped steeply as radial distance increased. At any given distance from the channel, [Ca2+] was higher at negative than at positive potentials. The radii of Ca2+ microdomains were significantly reduced by 3 or 10 mM BAPTA, but not by 10 mM EGTA. 6. In conclusion, the distinctive voltage dependence and susceptibility of Ca2+ release-induced ICa inactivation to fast and slow Ca2+ buffers suggests that the process is mediated through local changes of [Ca2+] in the vicinity of closely associated Ca2+ channels and ryanodine receptors.
机译:1.使用全细胞膜片钳和indo-1荧光测量技术研究了单个大鼠心室肌细胞中Ca2 +从肌浆网(SR)释放引起的Ca2 +电流(ICa)失活。 2.将脉冲去极化至0 mV会引起较大的Ca2 +瞬变和具有双指数失活动力学的ICa。通过咖啡因的20 s脉冲改变SR Ca2 +的负载量表明,ICa失活的快速成分取决于Ca2 +释放的幅度。 3.使用称为ICa的部分抑制(FICa)的函数,定量分析了由Ca2 +释放引起的ICa失活,而与电压和Ca2 +的进入无关。 FICa的电压关系具有负斜率,类似于单通道Ca2 +电流(iCa)的斜率,而不是宏观ICa和Ca2 +瞬变的钟形电流-电压(I-V)关系。 4.用10 mM EGTA(150 nM游离[Ca2 +])对心肌细胞进行细胞内透析,尽管消除了Ca2 +瞬变和细胞收缩,但对Ca2 +释放诱导的ICa失活没有影响。用3或10 mM BAPTA(180 nM游离[Ca2 +])透析以浓度依赖的方式减弱FICa,在正电位比在负电位具有更大的抑制作用,与​​更有效地缓冲较小iCa的Ca2 +微结构域一致。 5.模拟了打开的Ca2 +通道附近[Ca2 +]的空间分布。 [Ca2 +]在通道口达到亚毫摩尔水平,并随着径向距离的增加而急剧下降。在距通道任何给定距离处,[Ca2 +]在负电势下都高于在正电势下。 Ca2 +微区的半径显着降低了3或10 mM BAPTA,但没有降低10 mM EGTA。 6.总之,Ca2 +释放引起的ICa失活对快速和慢速Ca2 +缓冲液的独特电压依赖性和敏感性表明,该过程是通过紧密相关的Ca2 +通道和ryanodine受体附近[Ca2 +]的局部变化介导的。

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