首页> 外文期刊>The Journal of Membrane Biology >Modulation of Voltage-Dependent K+ Channel Current in Vascular Smooth Muscle Cells from Rat Mesenteric Arteries
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Modulation of Voltage-Dependent K+ Channel Current in Vascular Smooth Muscle Cells from Rat Mesenteric Arteries

机译:大鼠肠系膜动脉血管平滑肌细胞中电压依赖性K + 通道电流的调节

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Voltage-dependent K+ (Kv) channels were studied in smooth muscle cells (SMCs) freshly isolated from rat mesenteric arteries. A delayed outward rectifier Kv current (I K) with a weak voltage dependence was identified. The amplitude of I K, but not its inactivation kinetics, was inhibited by 4-aminopyridine (4-AP) (IC50, 5.1 ± 0.9 mm). The inhibitory effect of 4-AP was not use-dependent, and the unbinding of 4-AP from I K channels was complete in the absence of depolarization stimuli, suggesting the binding of 4-AP to the closed state of Kv channels. There was no change in the steady-state inactivation, but the steady-state activation curve of I K was shifted in the presence of 4-AP by +6 mV. Including 4-AP in pipette solution instantly inhibited I K upon the rupture of cell membrane, indicating that 4-AP bound to the inner mouth of Kv channel pores. Several Kv channel proteins encoding the native I K-type Kv channels, but not the transient outward A-type Kv channels, were identified. Among the identified I K-encoding gene transcripts, the expression of Kv1.5 was the most abundant. Our results elucidate the modulating mechanisms for the 4-AP-induced I K inhibition in rat mesenteric artery SMCs and suggest that the unique properties of Kv channels in these cells might be related to the heteromeric expression of the I K-encoding genes with Kv1.5 subunit playing an important role.
机译:在刚从大鼠肠系膜动脉分离的平滑肌细胞(SMC)中研究了电压依赖性K + (Kv)通道。确定了具有弱电压依赖性的延迟的向外整流器Kv电流(I K )。 4-氨基吡啶(4-AP)(IC50 ,5.1±0.9 mm)抑制了I K 的振幅,但没有抑制其失活动力学。 4-AP的抑制作用不依赖于使用,并且在没有去极化刺激的情况下,4-AP与IK 通道的结合完全解除,表明4-AP与Kv通道的闭合状态结合。稳态失活没有变化,但是在4-AP存在下,I K 的稳态活化曲线移动了+6 mV。移液器中加入4-AP可在细胞膜破裂时立即抑制I K ,表明4-AP结合在Kv通道孔的内口上。鉴定了几种编码天然I K 型Kv通道的Kv通道蛋白,但没有编码瞬时向外的A型Kv通道的蛋白。在鉴定出的IK 编码基因转录本中,Kv1.5的表达最为丰富。我们的结果阐明了4-AP诱导的大鼠肠系膜动脉SMC抑制作用的调节机制,并表明这些细胞中Kv通道的独特性质可能与IK的异源表达有关。 -编码具有Kv1.5亚基的基因起着重要作用。

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