首页> 外文期刊>Frontiers in Pharmacology >Mutations in the Voltage Sensors of Domains I and II of Na v1.5 that are Associated with Arrhythmias and Dilated Cardiomyopathy Generate Gating Pore Currents
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Mutations in the Voltage Sensors of Domains I and II of Na v1.5 that are Associated with Arrhythmias and Dilated Cardiomyopathy Generate Gating Pore Currents

机译:与心律失常相关的Na v 1.5的域I和II的电压传感器中的突变,并扩张心肌病产生门控孔电流

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Voltage gated sodium channels (Na_(v)) are transmembrane proteins responsible for action potential initiation. Mutations mainly located in the voltage sensor domain (VSD) of Na_(v)1.5, the cardiac sodium channel, have been associated with the development of arrhythmias combined with dilated cardiomyopathy. Gating pore currents have been observed with three unrelated mutations associated with similar clinical phenotypes. However, gating pores have never been associated with mutations outside the first domain of Na_(v)1.5. The aim of this study was to explore the possibility that gating pore currents might be caused by the Na_(v)1.5 R225P and R814W mutations (R3, S4 in DI and DII, respectively), which are associated with rhythm disturbances and dilated cardiomyopathy. Na_(v)1.5 WT and mutant channels were transiently expressed in tsA201 cells. The biophysical properties of the alpha pore currents and the presence of gating pore currents were investigated using the patch-clamp technique. We confirmed the previously reported gain of function of the alpha pores of the mutant channels, which mainly consisted of increased window currents mostly caused by shifts in the voltage dependence of activation. We also observed gating pore currents associated with the R225P and R814W mutations. This novel permeation pathway was open under depolarized conditions and remained temporarily open at hyperpolarized potentials after depolarization periods. Gating pore currents could represent a molecular basis for the development of uncommon electrical abnormalities and changes in cardiac morphology. We propose that this biophysical defect be routinely evaluated in the case of Na_(v)1.5 mutations on the VSD.
机译:电压门控钠通道(Na_(v))是跨膜蛋白,其负责作用潜在启动。主要位于Na_(v)1.5,心脏钠通道的电压传感器域(VSD)中的突变与心律失常的发育与扩张的心肌病联合。已经用与类似临床表型相关的三种无关突变观察到孔孔电流。然而,门控孔从未与Na_(v)1.5的第一结构域之外的突变相关联。本研究的目的是探讨Gating孔电流可能由Na_(v)1.5 r225p和R814W突变(分别为di和dii的r3,s4分别)引起的可能性,这与节律扰动和扩张的心肌病相关。 Na_(v)1.5 WT和突变通道在TSA201细胞中瞬时表达。使用贴片夹具技术研究了α孔电流的生物物理性质和存在的孔隙电流的存在。我们确认了先前报告了突变频道的α孔的功能的增益,其主要由增加的窗口电流组成,主要由激活的电压依赖性的变化引起。我们还观察到与R225P和R814W突变相关的孔隙电流。该新型渗透途径在去极化条件下打开,并在去极化期后在超极化电位下保持暂时打开。门控孔电流可以代表罕见电气异常的发展和心脏形态变化的分子基础。我们建议在VSD上的NA_(v)1.5突变的情况下常规评估该生物物理缺陷。

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