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首页> 外文期刊>American Journal of Physiology >Molecular correlates of altered expression of potassium currents in failing rabbit myocardium.
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Molecular correlates of altered expression of potassium currents in failing rabbit myocardium.

机译:衰竭心肌中钾电流表达改变的分子相关性。

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Action potential (AP) prolongation is a hallmark of failing myocardium. Functional downregulation of K currents is a prominent feature of cells isolated from failing ventricles. The detailed changes in K current expression differ depending on the species, the region of the heart, and the mechanism of induction of heart failure. We used complementary approaches to study K current downregulation in pacing tachycardia-induced heart failure in the rabbit. The AP duration (APD) at 90% repolarization was significantly longer in cells isolated from failing hearts compared with controls (539 +/- 162 failing vs. 394 +/- 114 control, P < 0.05). The major K currents in the rabbit heart, inward rectifier potassium current (I(K1)), transient outward (I(to)), and delayed rectifier current (I(K)) were functionally downregulated in cells isolated from failing ventricles. The mRNA levels of Kv4.2, Kv1.4, KChIP2, and Kir2.1 were significantly downregulated, whereas the Kv4.3, Erg, KvLQT1, and minK were unaltered in the failing ventricles compared with the control left ventricles. Significant downregulation in the long splice variant of Kv4.3, but not in the total Kv4.3, Kv4.2, and KChIP2 immunoreactive protein, was observed in cells isolated from the failing ventricle with no change in Kv1.4, KvLQT1, and in Kir2.1 immunoreactive protein levels. Multiple cellular and molecular mechanisms underlie the downregulation of K currents in the failing rabbit ventricle.
机译:动作电位(AP)延长是心肌衰竭的标志。 K电流的功能性下调是从心室衰竭中分离出来的细胞的显着特征。 K电流表达的详细变化取决于物种,心脏区域以及诱发心力衰竭的机制。我们使用补充方法研究了起搏性心动过速诱发的兔心律失常中钾电流的下调。与对照组相比,从衰竭心脏分离的细胞中90%复极时的AP持续时间(APD)明显更长(539 +/- 162失效vs. 394 +/- 114对照,P <0.05)。在从衰竭心室分离的细胞中,兔心脏中的主要K电流,向内整流钾电流(I(K1)),向内向外整流电流(I(to))和延迟整流电流(I(K))在功能上被下调。与对照左心室相比,在衰竭心室中,Kv4.2,Kv1.4,KChIP2和Kir2.1的mRNA水平显着下调,而Kv4.3,Erg,KvLQT1和minK的mRNA水平未发生变化。在从失败的心室分离的细胞中观察到Kv4.3的长剪接变体中的显着下调,但总Kv4.3,Kv4.2和KChIP2免疫反应蛋白中没有显着下调,而Kv1.4,KvLQT1和Kir2.1免疫反应蛋白水平升高。多种细胞和分子机制是衰竭心室中K电流下调的基础。

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