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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Cardiac-specific overexpression of Galphaq alters excitation-contraction coupling in isolated cardiac myocytes.
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Cardiac-specific overexpression of Galphaq alters excitation-contraction coupling in isolated cardiac myocytes.

机译:Galphaq的心脏特异性过度表达改变了离体心肌细胞中的兴奋收缩耦合。

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Transgenic mice with cardiac-specific overexpression of G alpha q exhibit a biochemical and physiological phenotype of load-independent cardiac hypertrophy with contractile dysfunction. To elucidate the cellular basis for altered contractility, we measured cellular contraction, Ca(2+)transients, and l -type Ca(2+)channel currents (I(Ca)) in left ventricular (LV) myocytes isolated from non transgenic (NT) controls or G alpha q hearts. Although baseline contractile function (% shortening) and the amplitude of Ca(2+)transients in G alpha q myocytes were similar to NT myocytes, the rates of cellular shortening and relengthening and the duration of Ca(2+)transients were prolonged in G alpha q myocytes. Myocytes from G alpha q hearts had larger cell capacitance but no change in I(Ca)density, voltage-dependence of activation and inactivation. The responses of I(Ca)to dihydropyridine drugs and a membrane permeable cAMP analog, 8-(4-chlorophenylthio) cAMP, were not altered; however, the time course of I(Ca)inactivation was significantly slower in G alpha q myocytes compared to NT myocytes. The kinetic difference in inactivation was abolished when Ba(2+)was used as the charge carrier or when the sarcoplasmic reticulum (SR) Ca(2+)was depleted by ryanodine, suggesting that Ca(2+)-dependent inactivation is reduced in G alpha q myocytes due to altered SR Ca(2+)release. Consistent with this hypothesis, the function of SR as assessed by the maximal Ca(2+)uptake rates and the apparent affinity of SR Ca(2+)-ATPase for Ca(2+)was reduced in ventricles of G alpha q heart. These results suggest that the reduced SR function contributes to the depressed contractility associated with this form of cardiac hypertrophy. Copyright 1999 Academic Press.
机译:具有心脏特异性过表达Galpha q的转基因小鼠表现出负荷独立的心脏肥大的生化和生理表型,并伴有收缩功能障碍。为了阐明改变收缩力的细胞基础,我们测量了从非转基因()分离的左心室(LV)心肌细胞中的细胞收缩,Ca(2+)瞬变和l型Ca(2+)通道电流(I(Ca))。 NT)控件或G alpha q心。尽管基线收缩功能(缩短%)和Gαq心肌细胞中Ca(2+)瞬变的幅度与NT心肌细胞相似,但G中细胞缩短和延长的速率以及Ca(2+)瞬变的持续时间延长αq肌细胞。来自G alpha q心脏的心肌细胞具有较大的细胞电容,但I(Ca)密度,激活和失活的电压依赖性均无变化。 I(Ca)对二氢吡啶类药物和膜可透过的cAMP类似物8-(4-氯苯硫基)cAMP的反应没有改变;然而,与NT肌细胞相比,Gαq肌细胞中I(Ca)失活的时间进程明显更慢。当Ba(2+)被用作电荷载体或肌浆网(SR)Ca(2+)被利诺丁耗尽时,灭活的动力学差异被消除,这表明Ca(2+)依赖性灭活在G alpha q心肌细胞由于改变的SR Ca(2+)释放。与此假设一致,SR的功能由最大Ca(2+)摄取率和SR Ca(2 +)-ATPase对Ca(2+)的表观亲和力评估,在G alpha q心脏的心室中减少。这些结果表明,SR功能降低导致与这种形式的心脏肥大相关的收缩力下降。版权所有1999,学术出版社。

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