Department of Medicine, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Mol Pharmacol. 2010 Aug;78(2):186-97. doi: 10.1124/mol.109.062216. Epub 2010 May 12.
Stimulation of alpha1-adrenoreceptors (alpha1-AR) acutely alters ion channel behavior via several signaling pathways [calcium and protein kinase C (PKC)]. Little is known about sustained alpha1-adrenergic/PKC signaling and channel regulation as may occur during cardiovascular disease states. Here we describe the effects of prolonged alpha1A-AR and PKC activity on human ether-a-go-go-related gene (HERG) K(+) channels (Kv11.1) expressed in a heterologous expression system. Stimulation of alpha1A-AR with phenylephrine or direct activation of PKC with phorbol ester increased HERG channel protein abundance and K(+) current density in a time- and dose-dependent manner. Channel augmentation reached a steady-state plateau within 24 h with a 2- to 6-fold induction. Phorbol ester and moderate alpha1A-AR stimulation enhanced HERG abundance in a PKC-dependent fashion but with stronger alpha1A-adrenergic stimulation; protein kinase A (PKA)-dependent activity also contributed. Comparable channel induction of other cardiac K(+) channels was not seen in this system. Comparison of wild-type HERG and channels with either mutated PKC phosphorylation sites (HERGDeltaPKC) or mutated PKA phosphorylation sites (HERGDeltaPKA) suggested that the mechanisms of augmentation of HERG by the two kinases were partially overlapping. The PKC-dependent effect was largely due to enhanced synthetic rates. Stimulation of alpha1-AR in cultured rat neonatal cardiac myocytes also enhanced the abundance of ERG channels. These findings show that alpha1A-AR stimulation is capable of influencing the balance of HERG channel synthesis and degradation via multiple signaling pathways, a process that may have relevance in cardiac diseases and treatment.
刺激 alpha1-肾上腺素能受体 (alpha1-AR) 可通过几种信号通路[钙和蛋白激酶 C (PKC)]急性改变离子通道行为。关于持续的 alpha1-肾上腺素能/PKC 信号和通道调节知之甚少,因为这种调节可能发生在心血管疾病状态下。在这里,我们描述了延长 alpha1A-AR 和 PKC 活性对异源表达系统中表达的人醚-a-去-go-相关基因 (HERG) K(+) 通道 (Kv11.1) 的影响。用苯肾上腺素刺激 alpha1A-AR 或用佛波酯直接激活 PKC 以时间和剂量依赖的方式增加 HERG 通道蛋白丰度和 K(+)电流密度。通道增强在 24 小时内达到稳定平台,诱导倍数为 2 至 6 倍。佛波酯和适度的 alpha1A-AR 刺激以 PKC 依赖性方式增强 HERG 丰度,但更强的 alpha1A-肾上腺素能刺激;蛋白激酶 A (PKA) 依赖性活性也有贡献。在该系统中未观察到其他心脏 K(+) 通道的类似通道诱导。野生型 HERG 与具有突变的 PKC 磷酸化位点 (HERGDeltaPKC) 或突变的 PKA 磷酸化位点 (HERGDeltaPKA) 的通道的比较表明,两种激酶增强 HERG 的机制部分重叠。PKC 依赖性效应主要归因于合成速率的提高。在培养的大鼠新生心肌细胞中刺激 alpha1-AR 也增强了 ERG 通道的丰度。这些发现表明,alpha1A-AR 刺激能够通过多种信号通路影响 HERG 通道合成和降解的平衡,这一过程在心脏疾病和治疗中可能具有相关性。