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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Regulation of human cardiac Kv1.5 channels by extracellular acidification
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Regulation of human cardiac Kv1.5 channels by extracellular acidification

机译:通过细胞外酸化调节人体心脏KV1.5通道

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Human Kv1.5 channels (hKv1.5) conduct the ultrarapid delayed rectifier potassium current (I-Kur), which plays an important role in action potential repolarization of atrial myocytes. The present study was undertaken to examine the effects of acidic pH on hKv1.5 wild-type (WT) and its pore mutant channels heterologously expressed in Chinese hamster ovary (CHO) cells using site-directed mutagenesis combined with whole-cell patch-clamp technique. Both extracellular and intracellular acidifications equally and reversely reduced the amplitude of hKv1.5 currents. The extracellular acidification significantly shifted the voltage dependence of current activation to more depolarized potentials and accelerated deactivation kinetics of the current. The ancillary beta subunits Kv beta 1.3 and Kv beta 1.2, known to modify the pharmacological sensitivities of hKv1.5, enhanced the extracellular proton-induced inhibitory effect on hKv1.5 current. In addition, several mutants (T462C, T479A, T480A, and I508A) exhibited significantly higher sensitivity to acidic pH-induced inhibition compared with WT channel, whereas the inhibitory effect of acidic pH was markedly reduced in H463G mutant. These observations indicate that (1) extracellular acidification modifies hKv1.5 gating and activity, (2) beta subunits and several residues (T462, T479, T480, and I508) play critical roles in determining the sensitivity of the channel to acidic exposure, and (3) H463 may be a critical sensor for the channel inhibition by extracellular protons.
机译:人类KV1.5通道(HKV1.5)进行UltraRAPID延迟整流钾电流(I-KUR),其在心房肌细胞的动作潜在的复极中起着重要作用。本研究进行了使用现场定向诱变与全细胞贴片夹具(CHO)细胞中的酸性pH对HKV1.5野生型(WT)及其孔突变体通道的影响进行酸性pH对HKV1.5野生型(WT)的影响。技术。细胞外和细胞内酸两者同样地逆转降低HKV1.5电流的幅度。细胞外酸化显着地使电流激活的电压依赖性变化到更加偏振的电位和加速失活动力学的电流。辅助β亚基KVβ1.3和KVβ1.2已知改变HKV1.5的药理敏感性,增强了对HKV1.5电流的细胞外质子诱导的抑制作用。另外,与WT通道相比,若干突变体(T462C,T479A,T480A和I508A)对酸性pH诱导的抑制表现出显着更高的敏感性,而H463G突变体酸性pH的抑制作用明显降低。这些观察结果表明(1)细胞外酸化改变HKV1.5门控和活性,(2)β亚基和几个残基(T462,T479,T480和I508)在确定通道对酸性暴露的敏感性时起着关键作用,以及(3)H463可以是细胞外质子的通道抑制的关键传感器。

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