Palmer L G, Frindt G
Department of Physiology, Cornell University Medical College, New York, New York 10021.
J Gen Physiol. 1988 Jul;92(1):121-38. doi: 10.1085/jgp.92.1.121.
The behavior of individual Na channels in the apical membrane of the rat cortical collecting tubule (CCT) was studied at different concentrations of the permeant ions Na and Li. Tubules were opened to expose their luminal surfaces and bathed in K-gluconate medium to minimize tubule-to-tubule variation in cell membrane potential and intracellular Na concentration. The patch-clamp technique was used to resolve currents through individual channels. The patch-clamp pipette was filled with solutions containing variable concentrations of either NaCl or LiCl. In one series of experiments, the concentrations were changed without substitutions. In another series, the ionic strength and Cl concentration were maintained constant by partial substitution of Li with N-methyl-D-glucamine (NMDG). In cell-attached patches, both the single-channel conductance (g) and the single-channel current (i) saturated as functions of the Na or Li activity in the pipette. Without NMDG, the saturation of i was well described by Michaelis-Menten kinetics with an apparent Km of approximately 20 mM activity for Na and approximately 50 mM activity for Li. Km was independent of voltage for both ions. With substitution for Li by NMDG, the apparent Km value for Li transport through the channels increased. The values of the probability of a channel's being open (Po) varied from patch to patch, but no effect of pipette ion activity on Po could be demonstrated. A weak dependence of Po on membrane voltage was observed, with hyperpolarization increasing Po by an average of 2.3%/mV.
在不同浓度的渗透离子钠(Na)和锂(Li)条件下,研究了大鼠皮质集合管(CCT)顶端膜中单个钠通道的行为。将小管打开以暴露其管腔表面,并置于葡萄糖酸钾培养基中孵育,以尽量减少小管间细胞膜电位和细胞内钠浓度的差异。采用膜片钳技术记录单个通道的电流。膜片钳微管中填充含有不同浓度氯化钠(NaCl)或氯化锂(LiCl)的溶液。在一系列实验中,溶液浓度改变时不进行替换。在另一系列实验中,通过用N-甲基-D-葡萄糖胺(NMDG)部分替代锂来维持离子强度和氯离子浓度恒定。在细胞贴附膜片中,单通道电导(g)和单通道电流(i)均随微管中Na或Li活性的变化而饱和。在没有NMDG的情况下,i的饱和情况可用米氏动力学很好地描述,对于Na,表观米氏常数(Km)约为20 mM活性,对于Li约为50 mM活性。两种离子的Km均与电压无关。用NMDG替代Li后,Li通过通道转运的表观Km值增加。通道开放概率(Po)的值因膜片而异,但未发现微管离子活性对Po有影响。观察到Po对膜电压有微弱依赖性,超极化使Po平均增加2.3%/mV。