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单价阳离子通过连接蛋白40间隙连接通道的渗透。铯、铷、钾、钠、锂、四乙铵、四甲基铵、四丁基铵,以及阴离子溴、氯、氟、乙酸根、天冬氨酸根、谷氨酸根和硝酸根的影响。

Monovalent cation permeation through the connexin40 gap junction channel. Cs, Rb, K, Na, Li, TEA, TMA, TBA, and effects of anions Br, Cl, F, acetate, aspartate, glutamate, and NO3.

作者信息

Beblo D A, Veenstra R D

机构信息

Department of Pharmacology, SUNY Health Science Center at Syracuse 13210, USA.

出版信息

J Gen Physiol. 1997 Apr;109(4):509-22. doi: 10.1085/jgp.109.4.509.

Abstract

The unitary conductances and permeability sequences of the rat connexin40 (rCx40) gap junction channels to seven monovalent cations and anions were studied in rCx40-transfected neuroblastoma 2A (N2A) cell pairs using the dual whole cell recording technique. Chloride salt cation substitutions (115 mM principal salt) resulted in the following junctional maximal single channel current-voltage relationship slope conductances (gamma 1 in pS): CsC1 (153), RbC1 (148), KC1 (142), NaC1 (115), LiC1 (86), TMAC1 (71), TEAC1 (63). Reversible block of the rCx40 channel was observed with TBA. Potassium anion salt gamma j are: Kglutamate (160), Kacetate (160), Kaspartate (158), KNO3 (157), KF (148), KC1 (142), and KBr (132). Ion selectivity was verified by measuring reversal potentials for current in rCx40 gap junction channels with asymmetric salt solutions in the two electrodes and using the Goldman-Hodgkin-Katz equation to calculate relative permeabilities. The permeabilities relative to Li+ are: Cs+ (1.38), Rb+ (1.32), K+ (1.31), Na+ (1.16), TMA+ (0.53), TEA+ (0.45), TBA+ (0.03), Cl- (0.19), glutamate+ (0.04), and NO(3)- (0.14), assuming that the monovalent anions permeate the channel by forming ion pairs with permeant monovalent cations within the pore thereby causing proportionate decreases in the channel conductance. This hypothesis can account for why the predicted increasing conductances with increasing ion mobilities in an essentially aqueous channel were not observed for anions in the rCx40 channel. The rCx40 effective channel radius is estimated to be 6.6 A from a theoretical fit of the relationship of relative permeability and cation radius.

摘要

采用双全细胞记录技术,在转染了大鼠连接蛋白40(rCx40)的神经母细胞瘤2A(N2A)细胞对中,研究了rCx40间隙连接通道对七种单价阳离子和阴离子的单位电导和通透性序列。氯化物盐阳离子替代(115 mM主要盐)导致以下连接最大单通道电流 - 电压关系斜率电导(γ1,单位为pS):CsCl(153)、RbCl(148)、KCl(142)、NaCl(115)、LiCl(86)、TMACl(71)、TEACl(63)。观察到TBA对rCx40通道有可逆性阻断。钾阴离子盐的γj为:谷氨酸钾(160)、醋酸钾(160)、天冬氨酸钾(158)、硝酸钾(157)、氟化钾(148)、氯化钾(142)和溴化钾(132)。通过在两个电极中使用不对称盐溶液测量rCx40间隙连接通道中电流的反转电位,并使用戈德曼 - 霍奇金 - Katz方程计算相对通透性,验证了离子选择性。相对于Li + 的通透性为:Cs + (1.38)、Rb + (1.32)、K + (1.31)、Na + (1.16)、TMA + (0.53), TEA + (0.45)、TBA + (0.03)、Cl - (0.19)、谷氨酸 + (0.04)和NO(3)- (0.14),假设单价阴离子通过与孔内的渗透单价阳离子形成离子对来渗透通道,从而导致通道电导成比例降低。该假设可以解释为什么在rCx40通道中未观察到随着离子迁移率增加(在基本为水性的通道中)预测的电导增加。根据相对通透性与阳离子半径关系的理论拟合,估计rCx40有效通道半径为6.6 Å。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7f8/2219432/3ed0ccffdbfe/JGP.beblo1.jpg

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