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表达对ATP不敏感的肌膜KATP通道的转基因小鼠中兴奋-收缩偶联的重塑

Remodeling of excitation-contraction coupling in transgenic mice expressing ATP-insensitive sarcolemmal KATP channels.

作者信息

Flagg Thomas P, Charpentier Flavien, Manning-Fox Jocelyn, Remedi Maria Sara, Enkvetchakul Decha, Lopatin Anatoli, Koster Joseph, Nichols Colin

机构信息

Department of Cell Biology and Physiology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2004 Apr;286(4):H1361-9. doi: 10.1152/ajpheart.00676.2003. Epub 2003 Dec 4.

Abstract

Reducing the ATP sensitivity of the sarcolemmal ATP-sensitive K(+) (K(ATP)) channel is predicted to lead to active channels in normal metabolic conditions and hence cause shortened ventricular action potentials and reduced myocardial inotropy. We generated transgenic (TG) mice that express an ATP-insensitive K(ATP) channel mutant [Kir6.2(deltaN2-30,K185Q)] under transcriptional control of the alpha-myosin heavy chain promoter. Strikingly, myocyte contraction amplitude was increased in TG myocytes (15.68 +/- 1.15% vs. 10.96 +/- 1.49%), even though K(ATP) channels in TG myocytes are very insensitive to inhibitory ATP. Under normal metabolic conditions, steady-state outward K(+) currents measured under whole cell voltage clamp were elevated in TG myocytes, consistent with threshold K(ATP) activation, but neither the monophasic action potential measured in isolated hearts nor transmembrane action potential measured in right ventricular muscle preparations were shortened at physiological pacing cycles. Taken together, these results suggest that there is a compensatory remodeling of excitation-contraction coupling in TG myocytes. Whereas there were no obvious differences in other K(+) conductances, peak L-type Ca(2+) current (I(Ca)) density (-16.42 +/- 2.37 pA/pF) in the TG was increased compared with the wild type (-8.43 +/- 1.01 pA/pF). Isoproterenol approximately doubled both I(Ca) and contraction amplitude in wild-type myocytes but failed to induce a significant increase in TG myocytes. Baseline and isoproterenol-stimulated cAMP concentrations were not different in wild-type and TG hearts, suggesting that the enhancement of I(Ca) in the latter does not result from elevated cAMP. Collectively, the data demonstrate that a compensatory increase in I(Ca) counteracts a mild activation of ATP-insensitive K(ATP) channels to maintain the action potential duration and elevate the inotropic state of TG hearts.

摘要

肌膜ATP敏感性钾(K(ATP))通道的ATP敏感性降低预计会导致在正常代谢条件下通道处于激活状态,从而导致心室动作电位缩短和心肌收缩力降低。我们构建了转基因(TG)小鼠,其在α-肌球蛋白重链启动子的转录控制下表达一种对ATP不敏感的K(ATP)通道突变体[Kir6.2(ΔN2 - 30,K185Q)]。令人惊讶的是,TG心肌细胞的收缩幅度增加(15.68±1.15%对10.96±1.49%),尽管TG心肌细胞中的K(ATP)通道对抑制性ATP非常不敏感。在正常代谢条件下,全细胞电压钳记录的TG心肌细胞的稳态外向K(+)电流升高,这与K(ATP)通道的阈值激活一致,但在生理起搏周期下,分离心脏中测量的单相动作电位和右心室肌制备物中测量的跨膜动作电位均未缩短。综上所述,这些结果表明TG心肌细胞中存在兴奋 - 收缩偶联的代偿性重塑。虽然其他K(+)电导没有明显差异,但与野生型(-8.43±1.01 pA/pF)相比,TG中的L型钙电流(I(Ca))峰值密度(-16.42±2.37 pA/pF)增加。异丙肾上腺素使野生型心肌细胞的I(Ca)和收缩幅度大约增加了一倍,但未能在TG心肌细胞中诱导出显著增加。野生型和TG心脏的基础和异丙肾上腺素刺激的cAMP浓度没有差异,这表明后者I(Ca)的增强不是由cAMP升高引起的。总体而言,数据表明I(Ca)的代偿性增加抵消了对ATP不敏感的K(ATP)通道的轻度激活,以维持动作电位持续时间并提高TG心脏的收缩状态。

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