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Kir2 inward rectification–controlled precise and dynamic balances between Kir2 and HCN currents initiate pacemaking activity

机译:Kir2内向整流控制– Kir2和HCN电流之间的精确和动态平衡启动了起搏活动

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摘要

Spontaneous rhythmic action potential or pacemaking activity of pacemaker cells controls rhythmic signaling such as heartbeat. The mechanism underlying the origin of pacemaking activity is not well understood. In this study, we created human embryonic kidney (HEK) 293 cells that show pacemaking activity through heterologous expression of strong inward rectifier K+ subfamily 2 isoform 1 (Kir2.1) channels, hyperpolarization-activated cyclic nucleotide-gated isoform 2 (HCN2) nonselective cation channels, and voltage-gated Na+ subfamily 1 isoform 5 or Ca2+ subfamily 3 isoform 1 (Nav1.5 or Cav3.1) channels. A range of relative levels of Kir2.1 and HCN2 currents dynamically counterbalance, generating spontaneous rhythmic oscillation of resting membrane potential between −64 and −34 mV and determining oscillation rates. Each oscillation cycle begins with an autodepolarization phase, which slowly proceeds to the threshold potential that activates Nav1.5 or Cav3.1 channels and triggers action potential, causing engineered HEK293 cells to exhibit pacemaking activity at a rate of ≤67 beats/min. Engineered HEK293 cells with Kir2.1 and either HCN3 or HCN4 also show the oscillation. Engineered HEK293 cells expressing HCN2 and other Kir2 channels, which lack Kir2.1-like complete inward rectification, do not show the oscillation. Therefore, Kir2.1-like inward rectification–controlled precise and dynamic balances between Kir2 and HCN currents initiate spontaneous rhythmic action potential and form an origin of pacemaking activity; Kir2 and HCN channels play essential roles in pacemaking activity.—Chen, K., Zuo, D., Wang, S.-Y. Chen, H. Kir2 inward rectification–controlled precise and dynamic balances between Kir2 and HCN currents initiate pacemaking activity.
机译:起搏器细胞的自发性节律动作电位或起搏活动可控制节律性信号传导,例如心跳。起搏活动起源的机制尚不清楚。在这项研究中,我们创建了人类胚胎肾脏(HEK)293细胞,该细胞通过强向内整流子K + 亚家族2亚型1(Kir2.1)通道,超极化激活的环状核苷酸的异源表达来显示起搏活动。门控异构体2(HCN2)非选择性阳离子通道,以及电压门控Na + 亚族1异构体5或Ca 2 + 亚族3异构体1(Nav1.5或Cav3。 1)频道。一系列Kir2.1和HCN2电流的相对水平会动态平衡,从而在-64和-34 mV之间产生静息膜电位的自发有节奏的振荡并确定振荡速率。每个振荡周期都以自去极化阶段开始,该阶段缓慢进行到阈值电位,从而激活Nav1.5或Cav3.1通道并触发动作电位,从而使工程化的HEK293细胞以≤67次/分钟的速度显示起搏活动。具有Kir2.1和HCN3或HCN4的工程化HEK293细胞也显示出振荡。表达HCN2和其他Kir2通道的工程化HEK293细胞缺少Kir2.1样的完全向内整流,但未显示出振荡。因此,Kir2和HCN电流之间的类似Kir2.1的向内整流控制的精确和动态平衡启动了自发的节律动作电位,并成为起搏活动的起源。 Kir2和HCN频道在起搏活动中起着至关重要的作用。-Chen,K.,Zuo,D.,Wang,S.-Y。 Chen,H. Kir2向内整流控制– Kir2和HCN电流之间的精确和动态平衡可启动起搏活动。

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