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首页> 外文期刊>Endocrinology >Growth hormone secretagogues reduce transient outward K+ current via phospholipase C/protein kinase C signaling pathway in rat ventricular myocytes.
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Growth hormone secretagogues reduce transient outward K+ current via phospholipase C/protein kinase C signaling pathway in rat ventricular myocytes.

机译:生长激素促分泌素通过大鼠心室肌细胞中的磷脂酶C /蛋白激酶C信号传导途径减少瞬时向外K +电流。

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摘要

Endogenous ghrelin and its synthetic counterpart hexarelin are peptide GH secretagogues (GHS) that exert a positive ionotropic effect in the cardiovascular system. The mechanism by which GHS modulate cardiac electrophysiology properties to alter myocyte contraction is poorly understood. In the present study, we examined whether GHS regulates the transient outward potassium current (I(to)) as well as the putative intracellular signaling cascade responsible for such regulation. GHS and experimental agents were applied locally onto freshly isolated adult Sprague-Dawley rat ventricular myocytes and action potential morphology and I(to) was recorded using nystatin-perforated whole-cell patch-clamp recording technique. Under current clamp, ghrelin and hexarelin (10 nm) significantly prolonged action potential duration. Under voltage clamp, hexarelin and ghrelin inhibited I(to) in a concentration-dependent manner. This inhibition was abolished in the presence of the GHS receptor (GHS-R) antagonist [D-Lys(3)]GH-releasing peptide-6 (10 microm) and GHS-R1a-specific antagonist BIM28163 (1 microm). GHS-induced I(to) inhibition was totally reversed by the phospholipase C inhibitor U73122 (5 microm) and protein kinase C inhibitors GO6983 (1 microm) and calphostin C (0.1 microm) but not by the cAMP antagonist Rp-cAMP (100 microm) or the PKA inhibitor H89 (1 microm). We conclude that hexarelin and ghrelin activate phospholipase C and protein kinase C signaling cascade through the stimulation of the GHS-R, resulting in a decrease in the I(to) current and subsequent prolongation of action potential duration.
机译:内源性生长素释放肽及其合成的六氢释放蛋白是肽GH促分泌素(GHS),可在心血管系统中发挥正离子作用。 GHS调节心脏电生理特性以改变心肌细胞收缩的机制了解甚少。在本研究中,我们检查了GHS是否调节瞬时向外钾电流(I(to))以及负责这种调节的假定细胞内信号级联反应。将GHS和实验试剂局部应用于新鲜分离的成年Sprague-Dawley大鼠心室肌细胞,并用制霉菌素穿孔的全细胞膜片钳记录技术记录动作电位形态和I(to)。在电流钳下,ghrelin和hexarelin(10 nm)显着延长了动作电位的持续时间。在电压钳制下,六氢萘酚和生长激素释放肽以浓度依赖的方式抑制I(to)。在GHS受体(GHS-R)拮抗剂[D-Lys(3)] GH释放肽6(10微米)和GHS-R1a特异性拮抗剂BIM28163(1微米)的存在下,这种抑制作用被消除。磷脂酶C抑制剂U73122(5微米)和蛋白激酶C抑制剂GO6983(1微米)和钙磷蛋白C(0.1微米)完全逆转了GHS诱导的I(to)抑制作用,但cAMP拮抗剂Rp-cAMP(100微米)却没有完全逆转)或PKA抑制剂H89(1微米)。我们得出的结论是,hexarelin和ghrelin通过刺激GHS-R激活磷脂酶C和蛋白激酶C信号级联,从而导致I(to)电流的降低和随后动作电位持续时间的延长。

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