首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Stimulation of Na/Ca exchange by the beta-adrenergic/protein kinase A pathway in guinea-pig ventricular myocytes at 37 degrees C.
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Stimulation of Na/Ca exchange by the beta-adrenergic/protein kinase A pathway in guinea-pig ventricular myocytes at 37 degrees C.

机译:在37摄氏度下,豚鼠心室肌​​细胞中β-肾上腺素/蛋白激酶A通路刺激Na / Ca交换。

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We investigated the effect of beta-adrenergic stimulation on Na/Ca exchange in whole-cell patch-clamped guinea-pig ventricular myocytes at 37 degrees C. With ion channel and Na/K pump currents blocked, the Na/Ca exchange current (I(Na-Ca) was measured selectively as membrane current inhibited by 10 mM nickel (Ni) during a voltage ramp applied between +80 and -120 mV. Isoprenaline (1 microM) caused an increase in both inward and outward current generated by the Na/Ca exchange, which was prevented by the beta-adrenoceptor blocker propranolol. These data suggest that isoprenaline caused a receptor-mediated up-regulation of Na/Ca exchange activity. Mimicking beta-adrenoceptor activation, either by stimulation of adenylate cyclase with forskolin or by internal dialysis of cells with cyclic AMP (3':5'-cyclic adenosine monophosphate), also increased I(Na-Ca). Using fluorescence Ca measurement, an increase of internal cAMP was shown to increase the rate of transmembrane Ca transport via the Na/Ca exchange. A selective inhibitor of protein kinase A prevented stimulation of Na/Ca exchange by isoprenaline. These data suggest that the underlying mechanism of stimulation was phosphorylation of the Na/Ca exchange protein by protein kinase A. Isoprenaline did not stimulate I(Na-Ca) when experiments were carried out at 20 degrees C, in contrast to the findings at 37 degrees C. Modulation of Na/Ca exchange by the beta-adrenergic pathway may have important physiological consequences for intracellular Ca regulation and electrical activity during hormonal stimulation, or during sympathetic nerve stimulation.
机译:我们在37摄氏度下研究了β-肾上腺素刺激对全细胞膜片固定的豚鼠心室肌​​细胞Na / Ca交换的影响。在离子通道和Na / K泵电流被阻断的情况下,Na / Ca交换电流(I (Na-Ca)的选择性测量是在+80至-120 mV之间施加电压斜坡期间,膜电流被10 mM镍(Ni)抑制。异丙肾上腺素(1 microM)导致Na产生的内向和外向电流均增加β肾上腺素受体阻滞剂普萘洛尔阻止了/ Ca的交换,这些数据表明,异丙肾上腺素引起了Na / Ca交换活性的受体介导的上调,模仿了β-肾上腺素受体的激活,通过用福司可林或腺苷酸刺激腺苷酸环化酶。通过使用环AMP(3':5'-环腺苷一磷酸)对细胞进行内部透析,还增加了I(Na-Ca)。使用荧光Ca测量,表明内部cAMP的增加可增加跨膜Ca通过Na / Ca交换。蛋白激酶A的选择性抑制剂阻止了异丙肾上腺素刺激Na / Ca交换。这些数据表明,刺激的潜在机制是蛋白激酶A使Na / Ca交换蛋白磷酸化。与在37°C的实验结果相反,在20°C进行实验时,异丙肾上腺素不会刺激I(Na-Ca)。 β-肾上腺素途径对Na / Ca交换的调节可能对激素刺激或交感神经刺激期间细胞内Ca调节和电活动具有重要的生理影响。

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