首页> 外文期刊>The Journal of Physiology >Modulation of human ether-a-go-go-related K+ (HERG) channel inactivation by Cs+ and K+.
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Modulation of human ether-a-go-go-related K+ (HERG) channel inactivation by Cs+ and K+.

机译:通过Cs +和K +调节与人类醚相关的K +(HERG)通道失活。

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Unlike many other native and cloned K+ channels, human ether-a-go-go-related K+ (HERG) channels show significant Cs+ permeability with a PCs/PK (the permeability of Cs+ relative to that of K+) of 0.36 +/- 0.03 (n = 10). Here, we find that raising the concentration of external Cs+ (Cs+o) dramatically slows HERG channel inactivation without affecting activation. Replacement of 5 mM K+o by 135 mM Cs+o increased both inactivation and recovery time constants and shifted the mid-point of the steady-state inactivation curve by 25 mV in the depolarized direction (n = 6, P < 0.01). Raising [Cs+]o also modulated the voltage sensitivity of inactivation gating. With 130 mM Cs+i and 135 mM NMDG+o, the inactivation time constant decreased e-fold per 47.5 +/- 1.1 mV (n = 5), and when 20 mM Cs+ was added to the bath solution, the inactivation time constant decreased e-fold per 20.6 +/- 1.3 mV (n = 5, P < 0.01). A quantitative analysis suggests that Cs+o binds to a site in the pore that is influenced by the transmembrane electrical field, so that Cs+o-induced slowing of HERG inactivation is less prominent at strong depolarizations. K+o has effects that are similar to Cs+o and their effects were additive, suggesting Cs+o and K+o may share a common mechanism of action. The strong effects of Cs+ on inactivation but not on activation highlight the importance of ion and channel interactions during the onset of inactivation in the HERG channel.
机译:与许多其他本地和克隆的K +通道不同,与人在一起的人为相关的K +(HERG)通道显示出显着的Cs +渗透性,PCs / PK(相对于K +的Cs +渗透性)为0.36 +/- 0.03 (n = 10)。在这里,我们发现提高外部Cs +(Cs + o)的浓度会显着减慢HERG通道的失活而不影响激活。用135 mM Cs + o代替5 mM K + o增加了失活和恢复时间常数,并使稳态失活曲线的中点在去极化方向上偏移了25 mV(n = 6,P <0.01)。升高[Cs +] o还可以调节灭活门控的电压灵敏度。在130 mM Cs + i和135 mM NMDG + o的条件下,失活时间常数每47.5 +/- 1.1 mV(n = 5)降低e倍,并且在浴液中添加20 mM Cs +时,失活时间常数每20.6 +/- 1.3 mV降低e倍(n = 5,P <0.01)。定量分析表明,Cs + o结合到孔中受跨膜电场影响的位点,因此在强去极化作用下,Cs + o诱导的HERG失活的减缓作用不明显。 K + o具有类似于Cs + o的作用,并且其作用是累加的,表明Cs + o和K + o可能具有共同的作用机理。 Cs +对失活的强烈影响而不是对激活的强烈影响突出了在HERG通道失活开始期间离子和通道相互作用的重要性。

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