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豚鼠心肌中KChIP2的表达揭示了其扩展的电生理作用。

Myocardial KChIP2 Expression in Guinea Pig Resolves an Expanded Electrophysiologic Role.

作者信息

Nassal Drew M, Wan Xiaoping, Liu Haiyan, Deschênes Isabelle

机构信息

Heart and Vascular Research Center, Department of Medicine, MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio, United States of America.

Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2016 Jan 14;11(1):e0146561. doi: 10.1371/journal.pone.0146561. eCollection 2016.

Abstract

Cardiac ion channels and their respective accessory subunits are critical in maintaining proper electrical activity of the heart. Studies have indicated that the K+ channel interacting protein 2 (KChIP2), originally identified as an auxiliary subunit for the channel Kv4, a component of the transient outward K+ channel (Ito), is a Ca2+ binding protein whose regulatory function does not appear restricted to Kv4 modulation. Indeed, the guinea pig myocardium does not express Kv4, yet we show that it still maintains expression of KChIP2, suggesting roles for KChIP2 beyond this canonical auxiliary interaction with Kv4 to modulate Ito. In this study, we capitalize on the guinea pig as a system for investigating how KChIP2 influences the cardiac action potential, independent of effects otherwise attributed to Ito, given the endogenous absence of the current in this species. By performing whole cell patch clamp recordings on isolated adult guinea pig myocytes, we observe that knock down of KChIP2 significantly prolongs the cardiac action potential. This prolongation was not attributed to compromised repolarizing currents, as IKr and IKs were unchanged, but was the result of enhanced L-type Ca2+ current due to an increase in Cav1.2 protein. In addition, cells with reduced KChIP2 also displayed lowered INa from reduced Nav1.5 protein. Historically, rodent models have been used to investigate the role of KChIP2, where dramatic changes to the primary repolarizing current Ito may mask more subtle effects of KChIP2. Evaluation in the guinea pig where Ito is absent, has unveiled additional functions for KChIP2 beyond its canonical regulation of Ito, which defines KChIP2 as a master regulator of cardiac repolarization and depolarization.

摘要

心脏离子通道及其各自的辅助亚基对于维持心脏正常的电活动至关重要。研究表明,钾通道相互作用蛋白2(KChIP2)最初被鉴定为瞬时外向钾通道(Ito)的一个组成部分——通道Kv4的辅助亚基,它是一种钙结合蛋白,其调节功能似乎并不局限于对Kv4的调节。事实上,豚鼠心肌不表达Kv4,但我们发现它仍能维持KChIP2的表达,这表明KChIP2除了与Kv4进行这种典型的辅助相互作用来调节Ito之外,还具有其他作用。在本研究中,鉴于该物种内源性缺乏Ito电流,我们利用豚鼠作为一个系统来研究KChIP2如何影响心脏动作电位,而不受其他归因于Ito的影响。通过对分离的成年豚鼠心肌细胞进行全细胞膜片钳记录,我们观察到敲低KChIP2会显著延长心脏动作电位。这种延长并非由于复极化电流受损,因为快速延迟整流钾电流(IKr)和缓慢延迟整流钾电流(IKs)未发生变化,而是由于Cav1.2蛋白增加导致L型钙电流增强的结果。此外,KChIP2减少的细胞还因Nav1.5蛋白减少而表现出钠电流降低。从历史上看,啮齿动物模型一直被用于研究KChIP2的作用,在这些模型中,主要复极化电流Ito的显著变化可能会掩盖KChIP2更细微的影响。在缺乏Ito的豚鼠中进行评估,揭示了KChIP2除了对Ito进行典型调节之外的其他功能,这将KChIP2定义为心脏复极化和去极化的主要调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e790/4713065/de7b5b86c490/pone.0146561.g001.jpg

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