首页> 外文期刊>Circulation research: a journal of the American Heart Association >Unique Cardiac Purkinje Fiber Transient Outward Current β-Subunit Composition: A Potential Molecular Link to Idiopathic Ventricular Fibrillation.
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Unique Cardiac Purkinje Fiber Transient Outward Current β-Subunit Composition: A Potential Molecular Link to Idiopathic Ventricular Fibrillation.

机译:独特的心脏浦肯野纤维瞬态外向电流β亚基组成:特发性室颤的潜在分子链接。

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摘要

Rationale: A chromosomal haplotype producing cardiac overexpression of dipeptidyl peptidase-like protein-6 (DPP6) causes familial idiopathic ventricular fibrillation. The molecular basis of transient outward current (Ito) in Purkinje fibers (PFs) is poorly understood. We hypothesized that DPP6 contributes to PF Ito and that its overexpression might specifically alter PF Ito properties and repolarization. Objective: To assess the potential role of DPP6 in PF Ito. Methods and Results: Clinical data in 5 idiopathic ventricular fibrillation patients suggested arrhythmia origin in the PF-conducting system. PF and ventricular muscle Ito had similar density, but PF Ito differed from ventricular muscle in having tetraethylammonium sensitivity and slower recovery. DPP6 overexpression significantly increased, whereas DPP6 knockdown reduced, Ito density and tetraethylammonium sensitivity in canine PF but not in ventricular muscle cells. The K(+)-channel interacting β-subunit K(+)-channel interacting protein type-2, essential for normal expression of Ito in ventricular muscle, was weakly expressed in human PFs, whereas DPP6 and frequenin (neuronal calcium sensor-1) were enriched. Heterologous expression of Kv4.3 in Chinese hamster ovary cells produced small Ito; Ito amplitude was greatly enhanced by coexpression with K(+)-channel interacting protein type-2 or DPP6. Coexpression of DPP6 with Kv4.3 and K(+)-channel interacting protein type-2 failed to alter Ito compared with Kv4.3/K(+)-channel interacting protein type-2 alone, but DPP6 expression with Kv4.3 and neuronal calcium sensor-1 (to mimic PF Ito composition) greatly enhanced Ito compared with Kv4.3euronal calcium sensor-1 and recapitulated characteristic PF kinetic/pharmacological properties. A mathematical model of cardiac PF action potentials showed that Ito enhancement can greatly accelerate PF repolarization. Conclusions: These results point to a previously unknown central role of DPP6 in PF Ito, with DPP6 gain of function selectively enhancing PF current, and suggest that a DPP6-mediated PF early-repolarization syndrome might be a novel molecular paradigm for some forms of idiopathic ventricular fibrillation.
机译:原理:产生心脏过度表达二肽基肽酶样蛋白6(DPP6)的染色体单倍型会导致家族性特发性心室颤动。浦肯野纤维(PFs)中瞬态向外电流(Ito)的分子基础知之甚少。我们假设DPP6有助于PF Ito,其过表达可能会特别改变PF Ito的性质和复极化。目的:评估DPP6在PF Ito中的潜在作用。方法和结果:5例特发性室颤患者的临床资料提示心律失常起源于PF传导系统。 PF和心室肌Ito具有相似的密度,但PF Ito与心室肌的区别在于四乙基铵敏感性和恢复较慢。 DPP6的过表达显着增加,而DPP6的敲低减少,犬PF中的Ito密度和四乙铵敏感性,但在心室肌细胞中则没有。 K(+)通道相互作用的β-亚基K(+)通道相互作用的蛋白2型,对Ito在心室肌中正常表达必不可少,在人PF中微弱表达,而DPP6和frequenin(神经钙传感器-1 )得到了丰富。 Kv4.3在中国仓鼠卵巢细胞中的异源表达产生了小的Ito。通过与K(+)通道相互作用的2型蛋白或DPP6的共表达,Ito幅度大大提高。与单独的Kv4.3 / K(+)通道相互作用蛋白2型相比,DPP6与Kv4.3和K​​(+)通道相互作用蛋白2型的共表达未能改变Ito,但与Kv4.3和与Kv4.3 /神经钙传感器1相比,神经元钙传感器1(模仿PF Ito组成)大大提高了Ito,并概括了特征性PF动力学/药理特性。心脏PF动作电位的数学模型表明,Ito增强可以大大加速PF复极化。结论:这些结果表明DPP6在PF Ito中的中心作用是未知的,DPP6的功能获得选择性增强了PF电流,并表明DPP6介导的PF早期复极化综合征可能是某些形式的特发性疾病的新型分子范式心室颤动。

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