Coronado R, Smith J S
Biophys J. 1987 Mar;51(3):497-502. doi: 10.1016/S0006-3495(87)83371-4.
Akali monovalents, Li, Na, K, Cs, and organic monovalents of molecular cross section less than 20 A2, ammonium, methylammonium, hydrazinium, guanidinium, are shown to have a measurable conductance through Ca channels of muscle transverse tubules reconstituted into planar bilayers. For the alkali series, single channel conductances follow the sequence Cs approximately equal to K greater than Na greater than Li with a conductance ratio [g(Cs)/g(Li)] = 1.7. For permeability ratios, the sequence is Li greater than Na greater than K approximately equal to Cs with [P(Li)/P(Cs)] = 1.5. Monovalent current is only unmasked when Ba ions are not present. In mixtures of Cs and Ba, single channel current reverses close to the Ba equilibrium potential and more than 100 mV away from the Cs equilibrium potential. A cutoff in conduction is found for organic cations larger than trimethylammonium; this suggests an apparent pore aperture of about 5 X 5 A. Even in such a large pore, the fact that the alkali cation permeability sequence and conductance sequence are inverted rules out molecular sieving as the mechanism of selection among monovalents.
已表明,碱金属单价离子(锂、钠、钾、铯)以及分子横截面积小于20 Ų的有机单价离子(铵、甲铵、肼鎓、胍鎓)在重构到平面双层中的肌肉横管的钙通道中具有可测量的电导。对于碱金属系列,单通道电导遵循以下顺序:铯≈钾>钠>锂,电导比[g(Cs)/g(Li)] = 1.7。对于渗透率比,顺序为锂>钠>钾≈铯,[P(Li)/P(Cs)] = 1.5。只有当不存在钡离子时,单价电流才会显现出来。在铯和钡的混合物中,单通道电流在接近钡平衡电位处反转,且与铯平衡电位相差超过100 mV。对于大于三甲铵的有机阳离子,发现存在传导截止;这表明表观孔径约为5×5 Å。即使在如此大的孔中,碱金属阳离子渗透率顺序和电导顺序相反这一事实排除了分子筛分作为单价离子选择机制的可能性。