Functional Role of the HCN4 Encoded ‘Funny Current’ in Human Sinus Node Pacemaker Cells

A. Verkerk, R. Wilders
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Abstract

We recently reported patch clamp data on the voltage dependence of HCN4 channels expressed in human cardiomyocyte progenitor cells. Their half-activation voltage was 15 mV less negative than previously observed for the HCN4 encoded hyperpolarization-activated funny current’ $(I_{f})$ in isolated human sinus node cells. The time constant of (de)activation vs. voltage relationship showed a similar less negative voltage dependence as well as a 38% higher peak. We assessed the functional effects of these differences in $I_{f}$ kinetics in the Fabbri-Severi model of a single human sinus node pacemaker cell. The $+15\ mV$ shift in half-activation voltage per se resulted in a substantial increase in $I_{f}$, carrying 85 vs. 59% of the net diastolic depolarizing charge, and a 14% shortening of the cycle length from 813 to 699 ms. This effect was counteracted by the time constant vs. voltage relationship, which caused a slower activation of $I_{f}$ in the diastolic membrane potential range. The resulting net effect was a 5.4% shortening of the cycle length from 813 to 770 ms, with $I_{f}$ carrying 59% of the net diastolic charge, and limited effects on the autonomic modulation of pacing rate by isoprenaline and acetylcholine. We conclude that the absolute value of the half-activation voltage of $I_{f}$ may be less indicative of the functional role of $I_{f}$ than commonly assumed.
HCN4编码的“滑稽电流”在人类窦结起搏器细胞中的功能作用
我们最近报道了膜片钳数据在人类心肌细胞祖细胞中表达的HCN4通道的电压依赖性。他们的半激活电压比先前在离体人窦结细胞中观察到的HCN4编码的超极化激活滑稽电流' $(I_{f})$低15 mV。(de)激活时间常数与电压关系表现出类似的较低的负电压依赖性,峰值高出38%。我们在单个人窦结起搏器细胞的fabri - severi模型中评估了这些$ i {f}$动力学差异的功能影响。半激活电压+15 mV本身的变化导致了I_{f}$的显著增加,携带了85%对59%的净舒张去极化电荷,并且将周期长度从813 ms缩短了14%至699 ms。这种效应被时间常数与电压的关系所抵消,这导致舒张膜电位范围内$I_{f}$的激活较慢。最终的净效应是将周期长度从813 ms缩短至770 ms,缩短5.4%,其中$I_{f}$携带59%的净舒张电荷,并且对异丙肾上腺素和乙酰胆碱对起搏速率的自主调节作用有限。我们得出结论,$I_{f}$的半激活电压的绝对值可能比通常认为的$I_{f}$的功能作用更少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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