Tinker A, Williams A J
Department of Cardiac Medicine, University of London, United Kingdom.
J Gen Physiol. 1992 Sep;100(3):479-93. doi: 10.1085/jgp.100.3.479.
The conduction properties of the alkaline earth divalent cations were determined in the purified sheep cardiac sarcoplasmic reticulum ryanodine receptor channel after reconstitution into planar phospholipid bilayers. Under bi-ionic conditions there was little difference in permeability among Ba2+, Ca2+, Sr2+, and Mg2+. However, there was a significant difference between the divalent cations and K+, with the divalent cations between 5.8- and 6.7-fold more permeant. Single-channel conductances were determined under symmetrical ionic conditions with 210 mM Ba2+ and Sr2+ and from the single-channel current-voltage relationship under bi-ionic conditions with 210 mM divalent cations and 210 mM K+. Single-channel conductance ranged from 202 pS for Ba2+ to 89 pS for Mg2+ and fell in the sequence Ba2+ greater than Sr2+ greater than Ca2+ greater than Mg2+. Near-maximal single-channel conductance is observed at concentrations as low as 2 mM Ba2+. Single-channel conductance and current measurements in mixtures of Ba(2+)-Mg2+ and Ba(2+)-Ca2+ reveal no anomalous behavior as the mole fraction of the ions is varied. The Ca(2+)-K+ reversal potential determined under bi-ionic conditions was independent of the absolute value of the ion concentrations. The data are compatible with the ryanodine receptor channel acting as a high conductance channel displaying moderate discrimination between divalent and monovalent cations. The channel behaves as though ion translocation occurs in single file with at most one ion able to occupy the conduction pathway at a time.
在纯化的绵羊心脏肌浆网雷诺丁受体通道重构到平面磷脂双层后,测定了碱土二价阳离子的传导特性。在双离子条件下,Ba2+、Ca2+、Sr2+和Mg2+之间的通透性差异很小。然而,二价阳离子和K+之间存在显著差异,二价阳离子的通透性比K+高5.8至6.7倍。在对称离子条件下,用210 mM Ba2+和Sr2+测定单通道电导,并根据双离子条件下210 mM二价阳离子和210 mM K+的单通道电流-电压关系进行测定。单通道电导范围从Ba2+的202 pS到Mg2+的89 pS,顺序为Ba2+>Sr2+>Ca2+>Mg2+。在低至2 mM Ba2+的浓度下观察到接近最大的单通道电导。在Ba(2+)-Mg2+和Ba(2+)-Ca2+混合物中的单通道电导和电流测量表明,随着离子摩尔分数的变化,没有异常行为。在双离子条件下测定的Ca(2+)-K+反转电位与离子浓度的绝对值无关。这些数据与雷诺丁受体通道作为一个高电导通道一致,该通道对二价和一价阳离子表现出适度的区分。该通道的行为就好像离子转运是逐个进行的,一次最多只有一个离子能够占据传导途径。