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海洋 n-3 PUFAs 调节 Ik(gating),通道表达和膜微域中的位置。

Marine n-3 PUFAs modulate IKs gating, channel expression, and location in membrane microdomains.

机构信息

Instituto de Investigaciones Biomédicas 'Alberto Sols' CSIC-UAM, C/Arturo Duperier 4, 28029 Madrid, Spain

Instituto de Investigaciones Biomédicas 'Alberto Sols' CSIC-UAM, C/Arturo Duperier 4, 28029 Madrid, Spain.

出版信息

Cardiovasc Res. 2015 Feb 1;105(2):223-32. doi: 10.1093/cvr/cvu250. Epub 2014 Dec 11.

Abstract

AIMS

Polyunsaturated fatty n-3 acids (PUFAs) have been reported to exhibit antiarrhythmic properties. However, the mechanisms of action remain unclear. We studied the electrophysiological effects of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) on IKs, and on the expression and location of Kv7.1 and KCNE1.

METHODS AND RESULTS

Experiments were performed using patch-clamp, western blot, and sucrose gradient techniques in COS7 cells transfected with Kv7.1/KCNE1 channels. Acute perfusion with both PUFAs increased Kv7.1/KCNE1 current, this effect being greater for DHA than for EPA. Similar results were found in guinea pig cardiomyocytes. Acute perfusion of either PUFA slowed the activation kinetics and EPA shifted the activation curve to the left. Conversely, chronic EPA did not modify Kv7.1/KCNE1 current magnitude and shifted the activation curve to the right. Chronic PUFAs decreased the expression of Kv7.1, but not of KCNE1, and induced spatial redistribution of Kv7.1 over the cell membrane. Cholesterol depletion with methyl-β-cyclodextrin increased Kv7.1/KCNE1 current magnitude. Under these conditions, acute EPA produced similar effects than those induced in non-cholesterol-depleted cells. A ventricular action potential computational model suggested antiarrhythmic efficacy of acute PUFA application under IKr block.

CONCLUSIONS

We provide evidence that acute application of PUFAs increases Kv7.1/KCNE1 through a probably direct effect, and shows antiarrhythmic efficacy under IKr block. Conversely, chronic EPA application modifies the channel activity through a change in the Kv7.1/KCNE1 voltage-dependence, correlated with a redistribution of Kv7.1 over the cell membrane. This loss of function may be pro-arrhythmic. This shed light on the controversial effects of PUFAs regarding arrhythmias.

摘要

目的

多不饱和脂肪酸(PUFAs)已被报道具有抗心律失常作用。然而,其作用机制尚不清楚。我们研究了二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)对 IKs 的电生理作用,以及 Kv7.1 和 KCNE1 的表达和位置。

方法和结果

在转染 Kv7.1/KCNE1 通道的 COS7 细胞中,使用膜片钳、western blot 和蔗糖梯度技术进行实验。两种 PUFAs 的急性灌注均增加 Kv7.1/KCNE1 电流,DHA 的作用大于 EPA。在豚鼠心肌细胞中也得到了类似的结果。急性灌注任何一种 PUFAs 都会使激活动力学减慢,而 EPA 会使激活曲线向左移位。相反,慢性 EPA 不会改变 Kv7.1/KCNE1 电流幅度,而是使激活曲线向右移位。慢性 PUFAs 降低 Kv7.1 的表达,但不降低 KCNE1 的表达,并诱导 Kv7.1 在细胞膜上的空间重新分布。用甲基-β-环糊精去除胆固醇会增加 Kv7.1/KCNE1 电流幅度。在这些条件下,急性 EPA 产生的作用与非胆固醇耗尽细胞中诱导的作用相似。一个心室动作电位计算模型表明,在 IKr 阻断下,急性 PUFAs 的应用具有抗心律失常作用。

结论

我们提供的证据表明,急性应用 PUFAs 通过一种可能的直接作用增加 Kv7.1/KCNE1,并在 IKr 阻断下显示出抗心律失常作用。相反,慢性 EPA 应用通过改变 Kv7.1/KCNE1 的电压依赖性来改变通道活性,与 Kv7.1 在细胞膜上的重新分布相关。这种功能丧失可能有致心律失常作用。这为 PUFAs 与心律失常之间的争议性作用提供了启示。

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