Chen P Y, Verkman A S
Division of Nephrology, University of California, San Francisco 94143.
Biochemistry. 1988 Jan 26;27(2):655-60. doi: 10.1021/bi00402a024.
The mechanisms for Cl transport across basolateral membrane vesicles (BLMV) isolated from rabbit renal cortex were examined by using the Cl-sensitive fluorescent indicator 6-methoxy-N-(3-sulfopropyl)quinolinium (SPQ). The transporters studied included Cl/base exchange, Cl/base/Na cotransport, K/Cl cotransport, and Cl conductance. Initial rates of chloride influx (JCl) were determined from the measured time course of SPQ fluorescence in BLMV following inwardly directed gradients of Cl and gradients of other ions and/or pH. For a 50 mM inwardly directed Cl gradient in BLMV which were voltage and pH clamped (7.0) using K/valinomycin and nigericin, JCl was 0.80 +/- 0.14 nmol S-1 (mg of vesicle protein)-1 (mean +/- SD, n = 8 separate preparations). In the absence of Na and CO2/HCO3 in voltage-clamped BLMV, JCl increased 56% +/- 5% in response to a 1.9 pH unit inwardly directed H gradient; the increase was further enhanced by 40% +/- 3% in the presence of CO2/HCO3 and inhibited 30% +/- 8% by 100 microM dihydro-4,4'-diisothiocyanostilbene-2,2'-disulfonic acid. Na gradients did not increase JCl in the absence of CO2/HCO3; however, an outwardly directed Na gradient in the presence of CO2/HCO3 increased JCl by 31% +/- 8% with a Na KD of 7 +/- 2 mM. These results indicate the presence of Cl/OH and Cl/HCO3 exchange, and Cl/HCO3 exchange trans-stimulated by Na. There was no significant effect of K gradients in the presence or absence of valinomycin, suggesting lack of significant K/Cl cotransport and Cl conductance under experimental conditions.(ABSTRACT TRUNCATED AT 250 WORDS)
利用对氯离子敏感的荧光指示剂6-甲氧基-N-(3-磺丙基)喹啉鎓(SPQ),研究了从兔肾皮质分离的基底外侧膜囊泡(BLMV)上氯离子跨膜转运的机制。所研究的转运体包括氯/碱基交换、氯/碱基/钠共转运、钾/氯共转运和氯电导。氯离子内流的初始速率(JCl)是根据在氯离子内向梯度以及其他离子和/或pH梯度作用下,BLMV中SPQ荧光的测量时间进程来确定的。对于使用钾/缬氨霉素和尼日利亚菌素进行电压钳制(7.0)且pH钳制的BLMV,当存在50 mM内向氯离子梯度时,JCl为0.80±0.14 nmol·s⁻¹·(mg囊泡蛋白)⁻¹(平均值±标准差,n = 8个独立制备样本)。在电压钳制的BLMV中,不存在钠和二氧化碳/碳酸氢根时,响应1.9个pH单位的内向氢离子梯度,JCl增加了56%±5%;在有二氧化碳/碳酸氢根存在时,增加幅度进一步提高40%±3%,而100 μM二氢-4,4'-二异硫氰基芪-2,2'-二磺酸可使其抑制30%±8%。在不存在二氧化碳/碳酸氢根时,钠梯度不会增加JCl;然而,在有二氧化碳/碳酸氢根存在时,外向钠梯度使JCl增加31%±8%,钠的解离常数KD为7±2 mM。这些结果表明存在氯/氢氧根和氯/碳酸氢根交换,以及由钠反刺激的氯/碳酸氢根交换。无论有无缬氨霉素,钾梯度均无显著影响,这表明在实验条件下不存在显著的钾/氯共转运和氯电导。(摘要截短于250字)