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Modulation of the voltage-dependent K+ current by intracellular Mg2+ in rat aortic smooth muscle cells.

机译:大鼠主动脉平滑肌细胞中细胞内Mg2 +对电压依赖性K +电流的调节。

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摘要

OBJECTIVE: Intracellular magnesium ions (Mg2+i) are important in the regulation of a wide range of cellular metabolic processes and modulation of a variety of ion channels. Mg2+ deficiency has been implicated in the aetiology of various cardiovascular diseases. However, potential targets and mechanisms of action of Mg2+i in the cardiovascular system remain poorly understood. We therefore investigated the effect of Mg2+i on the voltage-gated K+ (KV) channels in rat aortic myocytes (RAMs). METHODS: KV currents (IKv) were investigated in single RAMs isolated from adult Wistar rat thoracic aorta using the whole-cell patch clamp technique. Changes in the vascular reactivity were also assessed in endothelium-denuded rat aortic rings loaded with Mg2+. RESULTS: An increase in Mg2+i caused several significant effects on IKv: (1) slowed down kinetics of activation at high (10 mM) Mg2+; (2) caused inward rectification at positive membrane potentials; (3) shifted the voltage-dependent inactivation, but not steady-state IKv activation; (4) the effect of Mg2+i on IKv inactivation was enhanced in the presence of intracellular ATP. Selective changes in the voltage-dependent characteristics predict a significant inhibition of the whole-cell steady-state IKv ("window current"), resulting in membrane depolarisation and enhanced tissue excitability. An increased sensitivity to KCl and the inhibitors of the IKv, tetraethylammonium and 4-aminopyridine (4-AP), was observed in Mg2+-loaded aortas, confirming this hypothesis. CONCLUSION: Our results demonstrate that intracellular magnesium can act as a potent modulator of the KV channel function in vascular smooth muscle cells in the physiological range of membrane potentials, representing a novel mechanism for the regulation of KV channel activity in the vasculature.
机译:目的:细胞内镁离子(Mg2 + i)在调节广泛的细胞代谢过程和调节各种离子通道方面很重要。 Mg 2+缺乏症与各种心血管疾病的病因有关。然而,人们对心血管系统中Mg2 + i的潜在靶标和作用机制仍知之甚少。因此,我们研究了Mg2 + i对大鼠主动脉心肌细胞(RAM)中电压门控性K +(KV)通道的影响。方法:使用全细胞膜片钳技术在成年Wistar大鼠胸主动脉分离的单个RAM中研究KV电流(IKv)。血管反应性的变化也评估了内皮细胞剥夺载有Mg2 +的大鼠主动脉环。结果:Mg2 + i的增加对IKv产生了几个显着影响:(1)降低了高(10 mM)Mg2 +时的激活动力学; (2)在膜正电位引起向内整流; (3)转移了电压依赖性失活,而非稳态IKv活化; (4)在细胞内ATP存在下,Mg2 + i对IKv失活的作用增强。电压依赖性特性的选择性变化预示着对全细胞稳态IKv(“窗口电流”)的显着抑制,从而导致膜去极化和增强的组织兴奋性。在载有Mg2 +的主动脉中,观察到对KCl和IKv抑制剂,四乙铵和4-氨基吡啶(4-AP)的敏感性增加,证实了这一假设。结论:我们的研究结果表明,细胞内镁在膜电位的生理范围内可作为血管平滑肌细胞KV通道功能的有效调节剂,代表了调节脉管系统KV通道活性的新机制。

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