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蟾蜍骨骼肌中经巴曲毒素修饰的钠离子通道亚状态下的离子传导。

Ion conduction in substates of the batrachotoxin-modified Na+ channel from toad skeletal muscle.

作者信息

Naranjo D, Latorre R

机构信息

Departamento de Biología, Facultad de Ciencias, Universidad de Chile, Santiago.

出版信息

Biophys J. 1993 Apr;64(4):1038-50. doi: 10.1016/S0006-3495(93)81469-3.

Abstract

Batrachotoxin-modified Na+ channels from toad muscle were inserted into planar lipid bilayers composed of neutral phospholipids. Single-channel conductances were measured for [Na+] ranging between 0.4 mM and 3 M. When membrane preparations were made in the absence of protease inhibitors, two open conductance states were identified: a fully open state (16.6 pS in 200 mM symmetrical NaCl) and a substate that was 71% of the full conductance. The substate was predominant at [Na+] > 65 mM, whereas the presence of the fully open state was predominant at [Na+] < 15 mM. Addition of protease inhibitors during membrane preparation stabilized the fully open state over the full range of [Na+] studied. In symmetrical Na+ solutions and in biionic conditions, the ratio of amplitudes remained constant and the two open states exhibited the same permeability ratios of PLi/PNa and PCs/PNa. The current-voltage relations for both states showed inward rectification only at [Na+] < 10 mM, suggesting the presence of asymmetric negative charge densities at both channel entrances, with higher charge density in the external side. An energy barrier profile that includes double ion occupancy and asymmetric charge densities at the channel entrances was required to fit the conductance-[Na+] relations and to account for the rectification seen at low [Na+]. Energy barrier profiles differing only in the energy peaks can give account of the differences between both conductance states. Estimation of the surface charge density at the channel entrances is very dependent on the ion occupancy used and the range of [Na+] tested. Independent evidence for the existence of a charged external vestibule was obtained at low external [Na+] by identical reduction of the outward current induced by micromolar additions of Mg2+ and Ba2+.

摘要

将来自蟾蜍肌肉的经蛙毒素修饰的钠离子通道插入由中性磷脂构成的平面脂质双分子层中。在0.4 mM至3 M的钠离子浓度范围内测量单通道电导。当在无蛋白酶抑制剂的情况下制备膜制剂时,鉴定出两种开放电导状态:完全开放状态(在200 mM对称氯化钠中为16.6 pS)和一种亚状态,其为完全电导的71%。亚状态在钠离子浓度> 65 mM时占主导,而完全开放状态在钠离子浓度< 15 mM时占主导。在膜制备过程中添加蛋白酶抑制剂可在研究的整个钠离子浓度范围内稳定完全开放状态。在对称钠离子溶液和双离子条件下,幅度比保持恒定,且两种开放状态表现出相同的锂离子/钠离子和氯离子/钠离子渗透率比。两种状态的电流 - 电压关系仅在钠离子浓度< 10 mM时显示内向整流,这表明在通道入口两侧存在不对称的负电荷密度,外侧电荷密度更高。需要一个包含通道入口处双离子占据和不对称电荷密度的能垒分布图来拟合电导 - 钠离子浓度关系,并解释在低钠离子浓度下观察到的整流现象。仅在能峰上不同的能垒分布图可以解释两种电导状态之间的差异。通道入口处表面电荷密度的估计非常依赖于所使用的离子占据情况和测试的钠离子浓度范围。通过微摩尔添加镁离子和钡离子引起的外向电流相同程度的降低,在低外部钠离子浓度下获得了存在带电外部前庭的独立证据。

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