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首页> 外文期刊>The Journal of Physiology >Stabilization of Kv4 protein by the accessory K+ channel interacting protein 2 (KChIP2) subunit is required for the generation of native myocardial fast transient outward K+ currents
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Stabilization of Kv4 protein by the accessory K+ channel interacting protein 2 (KChIP2) subunit is required for the generation of native myocardial fast transient outward K+ currents

机译:通过辅助K +通道相互作用蛋白2(KChIP2)亚基稳定Kv4蛋白是产生天然心肌快速瞬态向外K +电流所必需的

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The fast transient outward K+ current (Ito,f) underlies the early phase of myocardial action potential repolarization, contributing importantly to the coordinated propagation of activity in the heart and to the generation of normal cardiac rhythms. Native Ito,f channels reflect the tetrameric assembly of Kv4 pore-forming (α) subunits, and previous studies suggest roles for accessory and regulatory proteins in controlling the cell surface expression and the biophysical properties of Kv4-encoded Ito,f channels. Here, we demonstrate that the targeted deletion of the cytosolic accessory subunit, K+ channel interacting protein 2 (KChIP2), results in the complete loss of the Kv4.2 protein, the α subunit critical for the generation of mouse ventricular Ito,f. Expression of the Kcnd2 (Kv4.2) transcript in KChIP2-/- ventricles, however, is unaffected. The loss of the Kv4.2 protein results in the elimination of Ito,f in KChIP2-/- ventricular myocytes. In parallel with the elimination of Ito,f, the slow transient outward K+ current (Ito,s) is upregulated and voltage-gated Ca2+ currents (ICa,L) are decreased. In addition, surface electrocardiograms and ventricular action potential waveforms in KChIP2-/- and wild-type mice are not significantly different, suggesting that the upregulation of Ito,s and the reduction in ICa,L compensate for the loss of Ito,f. Additional experiments revealed that Ito,f is not 'rescued' by adenovirus-mediated expression of KChIP2 in KChIP2-/- myocytes, although ICa,L densities are increased. Taken together, these results demonstrate that association with KChIP2 early in the biosynthetic pathway and KChIP2-mediated stabilization of Kv4 protein are critical determinants of native cardiac Ito,f channel expression.
机译:快速的瞬时向外K +电流(Ito,f)构成了心肌动作电位复极化的早期阶段,对心脏活动的协调传播和正常心律的产生做出了重要贡献。天然的Ito,f通道反映了Kv4孔形成(α)亚基的四聚体组装,以前的研究表明辅助蛋白和调节蛋白在控制Kv4编码的Ito,f通道的细胞表面表达和生物物理特性中的作用。在这里,我们证明了胞浆附件亚基K +通道相互作用蛋白2(KChIP2)的靶向缺失导致Kv4.2蛋白的完全丧失,Kv4.2蛋白是对小鼠心室Ito,f的产生至关重要的α亚基。但是,在KChIP2-/-心室中Kcnd2(Kv4.2)转录本的表达不受影响。 Kv4.2蛋白的丢失导致KChIP2-/-心室肌细胞中Ito,f的消除。与消除Ito,f并行,缓慢的瞬态向外K +电流(Ito,s)被上调,而电压门控Ca2 +电流(ICa,L)减小。此外,KChIP2-/-和野生型小鼠的表面心电图和心室动作电位波形没有显着差异,这表明Ito,s的上调和ICa,L的减少补偿了Ito,f的损失。其他实验表明,尽管ICa,L密度增加,但腺病毒介导的KChIP2-/-肌细胞中KChIP2的表达并未“拯救” Ito,f。综上所述,这些结果表明在生物合成途径中与KChIP2的早期结合以及KChIP2介导的Kv4蛋白的稳定化是天然心脏Ito,f通道表达的关键决定因素。

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