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Molecular Basis of the Effect of Potassium on Heterologously Expressed Pacemaker (HCN) Channels

机译:钾对异源表达起搏器(HCN)通道影响的分子基础

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摘要

Hyperpolarization-activated cyclic-nucleotide-gated (HCN) channels modulate the firing rates of neuronal and cardiac pacemaker cells. HCN channels resemble voltage-gated K+ channels structurally, but much less is known about their structure-function correlation. Although modulation of K+ channel gating by external K+ is a well-known phenomenon, such a link has not been established for HCN channels. Here we examined the effects of external permeant (K+, Na+ and Li+) and non-permeant (NMG+) ions on HCN1 and HCN2 gating. Substituting 64 of 96 mm external K+ with Na+, Li+ or NMG+ positively shifted steady-state activation (∼13 mV), and preferentially slowed activation of HCN1. Mutating the pore variant C-terminal to the GYG motif in HCN1, A352, to the analogous conserved Asp in K+ channels or Arg in HCN2 produced a significant hyperpolarizing activation shift (by 5–15 mV), slowed gating kinetics (up to 6-fold), and abolished or attenuated gating responses to external K+. Whereas Na+, Li+ and NMG+ substitutions produced depolarizing activation shifts of HCN2 similar to those of HCN1, deactivation but not activation of HCN2 was exclusively decelerated. We conclude that gating and permeation of HCN channels are coupled, and that modulation of this ‘pore-to-gate’ coupling by external K+ is isoform-specific.
机译:超极化激活的环核苷酸门控(HCN)通道可调节神经元和心脏起搏器细胞的放电速率。 HCN通道在结构上类似于电压门控的K + 通道,但对其结构-功能相关性的了解却很少。尽管通过外部K + 调制K + 通道门控是众所周知的现象,但尚未为HCN通道建立这种链接。在这里,我们检查了外部渗透(K + ,Na + 和Li + )和非渗透(NMG + < / sup>)HCN1和HCN2门控上的离子。用Na + ,Li + 或NMG + 的正向稳态替代96 mm外部K + 中的64激活(〜13 mV),并优先减慢HCN1的激活。将HCN1中的GYG基序的孔变体C端突变为A352,使其与K + 通道中类似的保守Asp或HCN2中的Arg产生显着的超极化激活位移(5-15 mV),降低了门控动力学(高达6倍),并且取消或减弱了对外部K + 的门控响应。 Na + ,Li + 和NMG + 取代产生的HCN2的去极化激活移位与HCN1相似,而去激活但不激活HCN2完全减速。我们得出结论,HCN通道的门控和渗透是耦合的,并且外部K + 对这种“孔对门”耦合的调制是特定于异构体的。

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