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Single point mutations affect fatty acid block of human myocardial sodium channel α subunit Na+ channels

机译:单点突变影响人的脂肪酸阻断 心肌钠通道α亚单位Na +通道

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摘要

Suppression of cardiac voltage-gated Na+ currents is probably one of the important factors for the cardioprotective effects of the n-3 polyunsaturated fatty acids (PUFAs) against lethal arrhythmias. The α subunit of the human cardiac Na+ channel (hH1α) and its mutants were expressed in human embryonic kidney (HEK293t) cells. The effects of single amino acid point mutations on fatty acid-induced inhibition of the hH1α Na+ current (INa) were assessed. Eicosapentaenoic acid (EPA, C20:5n-3) significantly reduced INa in HEK293t cells expressing the wild type, Y1767K, and F1760K of hH1α Na+ channels. The inhibition was voltage and concentration-dependent with a significant hyperpolarizing shift of the steady state of INa. In contrast, the mutant N406K was significantly less sensitive to the inhibitory effect of EPA. The values of the shift at 1, 5, and 10 μM EPA were significantly smaller for N406K than for the wild type. Coexpression of the β1 subunit and N406K further decreased the inhibitory effects of EPA on INa in HEK293t cells. In addition, EPA produced a smaller hyperpolarizing shift of the V1/2 of the steady-state inactivation in HEK293t cells coexpressing the β1 subunit and N406K. These results demonstrate that substitution of asparagine with lysine at the site of 406 in the domain-1-segment-6 region (D1-S6) significantly decreased the inhibitory effect of PUFAs on INa, and coexpression with β1 decreased this effect even more. Therefore, asparagine at the 406 site in hH1α may be important for the inhibition by the PUFAs of cardiac voltage-gated Na+ currents, which play a significant role in the antiarrhythmic actions of PUFAs.
机译:抑制心脏电压门控性Na +电流可能是n-3多不饱和脂肪酸(PUFA)对致命性心律不齐的心脏保护作用的重要因素之一。人心脏Na +通道(hH1α)的α亚基及其突变体在人胚胎肾(HEK293t)细胞中表达。评估了单个氨基酸点突变对脂肪酸诱导的hH1αNa +电流(INa)抑制的影响。二十碳五烯酸(EPA,C20:5n-3)显着降低了表达hH1αNa +通道的野生型,Y1767K和F1760K的HEK293t细胞中的INa。抑制作用是电压和浓度依赖性的,且INa稳态显着超极化移动。相反,突变体N406K对EPA的抑制作用不那么敏感。 N406K的1、5和10μMEPA处的位移值明显小于野生型。 β1亚基和N406K的共表达进一步降低了EPA对HEK293t细胞中INa的抑制作用。此外,EPA在共表达β1亚基和N406K的HEK293t细胞中,稳态失活的V1 / 2产生了较小的超极化位移。这些结果表明,在结构域1-段6区域(D1-S6)的406位上的赖氨酸取代天冬酰胺显着降低了PUFA对INa的抑制作用,与​​β1的共表达甚至进一步降低了该作用。因此,hH1α406位点的天冬酰胺可能对PUFA抑制心脏电压门控Na +电流起重要作用,而后者在PUFA的抗心律失常作用中起着重要作用。

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