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Kv7.1 上 K557E 错义突变:对 IKs 的显性负性抑制作用,但保留 cAMP 依赖性上调。

Long-QT mutation p.K557E-Kv7.1: dominant-negative suppression of IKs, but preserved cAMP-dependent up-regulation.

机构信息

Department of Cardiology, Cardiovascular Research Institute Maastricht, Maastricht University Medical Centre, PO Box 5800, Maastricht 6202 AZ, The Netherlands.

Department of Physiology, Faculty of Medicine, Masaryk University, Brno, Czech Republic.

出版信息

Cardiovasc Res. 2014 Oct 1;104(1):216-25. doi: 10.1093/cvr/cvu191. Epub 2014 Aug 18.

Abstract

AIMS

Mutations in KCNQ1, encoding for Kv7.1, the α-subunit of the IKs channel, cause long-QT syndrome type 1, potentially predisposing patients to ventricular tachyarrhythmias and sudden cardiac death, in particular, during elevated sympathetic tone. Here, we aim at characterizing the p.Lys557Glu (K557E) Kv7.1 mutation, identified in a Dutch kindred, at baseline and during (mimicked) increased adrenergic tone.

METHODS AND RESULTS

K557E carriers had moderate QTc prolongation that augmented significantly during exercise. IKs characteristics were determined after co-expressing Kv7.1-wild-type (WT) and/or K557E with minK and Yotiao in Chinese hamster ovary cells. K557E caused IKs loss of function with slowing of the activation kinetics, acceleration of deactivation kinetics, and a rightward shift of voltage-dependent activation. Together, these contributed to a dominant-negative reduction in IKs density. Confocal microscopy and western blot indicated that trafficking of K557E channels was not impaired. Stimulation of WT IKs by 3'-5'-cyclic adenosine monophosphate (cAMP) generated strong current up-regulation that was preserved for K557E in both hetero- and homozygosis. Accumulation of IKs at fast rates occurred both in WT and in K557E, but was blunted in the latter. In a computational model, K557E showed a loss of action potential shortening during β-adrenergic stimulation, in accordance with the lack of QT shortening during exercise in patients.

CONCLUSION

K557E causes IKs loss of function with reduced fast rate-dependent current accumulation. cAMP-dependent stimulation of mutant IKs is preserved, but incapable of fully compensating for the baseline current reduction, explaining the long QT intervals at baseline and the abnormal QT accommodation during exercise in affected patients.

摘要

目的

编码 IKs 通道 α 亚基 Kv7.1 的 KCNQ1 基因突变可导致 1 型长 QT 综合征,使患者在交感神经张力增加时易发生室性心律失常和心源性猝死,尤其是在交感神经张力增加时。在此,我们旨在对在荷兰一个家族中发现的 K557E Kv7.1 突变进行研究,观察该突变在基础状态和(模拟)肾上腺素能增加时的特征。

方法和结果

K557E 携带者的 QTc 间期中度延长,运动时显著增加。在表达 Kv7.1-野生型(WT)和/或 K557E 与 minK 和 Yotiao 的中国仓鼠卵巢细胞中,确定了 IKs 的特征。K557E 导致 IKs 功能丧失,激活动力学减慢,失活动力学加速,电压依赖性激活右移。所有这些都导致 IKs 密度的显性负性降低。共聚焦显微镜和 Western blot 表明 K557E 通道的转运不受影响。3'-5'-环磷酸腺苷(cAMP)刺激 WT IKs 产生强烈的电流上调,在杂合子和纯合子中对 K557E 均有保留。WT 和 K557E 均快速积累 IKs,但后者积累减少。在计算模型中,K557E 在β-肾上腺素能刺激下表现出动作电位缩短丧失,与患者运动时 QT 缩短缺失一致。

结论

K557E 导致 IKs 功能丧失,快速率依赖性电流积累减少。cAMP 依赖性突变体 IKs 刺激被保留,但不能完全补偿基线电流减少,这解释了基础状态下 QT 间期延长和受影响患者运动时 QT 适应异常。

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