Markevich N I, Korystova A F, Grichenko A S, Lankina D A, Kokoz Y M
Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Moscow Region.
Membr Cell Biol. 2000;14(1):109-27.
The regulation of L-type Ca2+ current in isolated rat cardiac cells was studied using the perforated patch-clamp technique. A dual effect of the cAMP-dependent phosphorylation activator, isoproterenol, at different holding potentials (V(h)) was shown. The currents increased at V(h) = -50 mV and decreased at V(h) = -30 mV. A dihydropyridine agonist, BAY K 8644, and isoproterenol had an additive effect on the activation of Ca2+ channels at holding potentials close to the resting potential. The additivity was disturbed at more positive V(h). The activating effect of BAY K 8644 did not virtually change in the presence of a protein kinase blocker, H8, and a phosphatase activator, acetylcholine. The results were interpreted within the framework of a two-site phosphorylation model with two independent pathways of Ca2+ current regulation.
采用穿孔膜片钳技术研究了分离的大鼠心肌细胞中L型钙电流的调节。结果显示,环磷酸腺苷(cAMP)依赖性磷酸化激活剂异丙肾上腺素在不同的钳制电位(V(h))下具有双重作用。在V(h)= -50 mV时电流增加,而在V(h)= -30 mV时电流减小。二氢吡啶激动剂BAY K 8644和异丙肾上腺素在接近静息电位的钳制电位下对钙通道的激活具有相加作用。在更正的V(h)时,这种相加性受到干扰。在存在蛋白激酶阻滞剂H8和磷酸酶激活剂乙酰胆碱的情况下,BAY K 8644的激活作用实际上没有改变。这些结果在具有两个独立钙电流调节途径的双位点磷酸化模型框架内进行了解释。