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电压门控的内源性 spermine 对小鼠内向整流钾通道 Kir2.1 的阻断作用,伴有不对称的钾离子浓度。

Voltage-dependent block by internal spermine of the murine inwardly rectifying K+ channel, Kir2.1, with asymmetrical K+ concentrations.

机构信息

Department of Physiology, Kansai Medical University, Moriguchi, Osaka 570-8506, Japan.

出版信息

J Physiol. 2010 Dec 1;588(Pt 23):4673-81. doi: 10.1113/jphysiol.2010.194480. Epub 2010 Oct 20.

Abstract

Effects of internal spermine on outward single-channel currents through a strongly inwardly rectifying K(+) channel (Kir2.1) were studied at asymmetrical K(+) concentrations (30 mm external and 150 mm internal K(+)). The current-voltage (I-V) relation for the single channel was almost linear and reversed at -37 ± 3 mV (V(R); n = 19). The channel conductance was 26.3 ± 1.3 pS (n = 24). The open-time and closed-time histograms were fitted with a single exponential function. Internal spermine at a concentration of 1-100 nm reduced the open time of the outward currents in a concentration-dependent manner and produced a blocked state. The steady-state open probability of the outward current decreased with larger depolarizations in both the absence and presence of internal spermine. The steady-state open probability with asymmetrical K(+) and symmetrical (150 mm external and internal K(+)) concentrations plotted against driving force (V - V(R)) coincided with smaller depolarizations in the absence of spermine and larger depolarizations and higher spermine concentrations in the presence of spermine. The blocking rate constants and unblock rates with 30 mm and 150 mm external K(+) were similar at the same driving force. The dissociation constant-membrane potential relation for 30 mm external K(+) was shifted in the negative direction from that for 150 mm external K(+) by 36 mV. These results suggested that the blocking kinetics depends on driving force to produce driving force-dependent inward rectification when the equilibrium potential for K(+) is altered by changing external K(+) and that the energy barriers and wells for blocking ions from passing or lodging are not stable but affected by external K(+) ions.

摘要

在不对称钾离子浓度(外部 30mM 和内部 150mM 钾离子)下,研究了内部精胺对强内向整流钾离子通道(Kir2.1)外向单通道电流的影响。单通道的电流-电压(I-V)关系几乎呈线性,反转电位为-37±3mV(V(R);n=19)。通道电导为 26.3±1.3pS(n=24)。开放时间和关闭时间直方图拟合为单指数函数。在 1-100nm 的浓度范围内,内部精胺以浓度依赖的方式降低外向电流的开放时间,并产生阻断状态。在不存在和存在内部精胺的情况下,外向电流的稳态开放概率随去极化的增大而减小。在不对称钾离子和对称钾离子(外部和内部均为 150mM)浓度下,与驱动力(V-V(R))的稳态开放概率图在没有精胺时,在较小的去极化下与较小的去极化和较高的精胺浓度时一致。在相同的驱动力下,用 30mM 和 150mM 外部钾离子测定的阻断速率常数和去阻断速率相似。外部 30mM 钾离子的解离常数-膜电位关系相对于外部 150mM 钾离子向负方向移动 36mV。这些结果表明,当通过改变外部钾离子来改变钾离子的平衡电位时,阻断动力学取决于驱动力以产生驱动力依赖性内向整流,并且阻断离子通过或停留的能量势垒和势阱不稳定,而是受外部钾离子的影响。

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