Turner R J, George J N
Clinical Investigations and Patient Care Branch, National Institute of Dental Research, Bethesda, Maryland 20892.
J Membr Biol. 1988 Apr;102(1):71-7. doi: 10.1007/BF01875354.
The Na/K/Cl-dependent component of the binding of the loop diuretic bumetanide to basolateral membrane vesicles from the rabbit parotid is studied. A Scatchard analysis indicates that this binding is due to a single high-affinity site with KD = 3.2 +/- 0.3 microM (n = 9) at 100 mM sodium, 100 mM potassium and 5 mM chloride. When KCl-dependent 22Na transport and tracer [3H]-bumetanide binding are monitored simultaneously as a function of (unlabeled) bumetanide concentration it is found that the K0.5 for bumetanide inhibition of both processes are identical indicating that the high-affinity bumetanide binding site studied here is identical with a bumetanide-inhibitory site on the Na/K/Cl cotransport system previously identified in this preparation (R.J. Turner. J.N. George and B.J. Baum, J. Membrane Biol. 94:143-152, 1986). High-affinity bumetanide binding exhibits a hyperbolic dependence on both [Na] and [K] consistent with Na/bumetanide and K/bumetanide binding stoichiometries of 1:1 and K0.5 values of approximately 33 mM for sodium and 23 mM for potassium. In contrast, the dependence on [Cl] is biphasic, with bumetanide binding increasing from 0 to 5 mM chloride and decreasing toward baseline levels thereafter. Scatchard analysis of this latter inhibitory effect of chloride indicates a competitive interaction with bumetanide in agreement with earlier indications that bumetanide inhibits Na/K/Cl cotransport at a chloride site. However, studies of the effects of various anions on bumetanide binding and 22Na transport show a poor correlation between the specificities of these two processes, suggesting that the inhibitory chloride site is not a chloride transport site.
对袢利尿剂布美他尼与兔腮腺基底外侧膜囊泡结合的钠/钾/氯依赖性成分进行了研究。Scatchard分析表明,这种结合归因于一个单一的高亲和力位点,在100 mM钠、100 mM钾和5 mM氯的条件下,KD = 3.2 +/- 0.3 microM(n = 9)。当同时监测氯化钾依赖性的22Na转运和示踪剂[3H] - 布美他尼结合作为(未标记)布美他尼浓度的函数时,发现布美他尼对这两个过程的抑制作用的K0.5相同,这表明此处研究的高亲和力布美他尼结合位点与先前在该制剂中鉴定的钠/钾/氯共转运系统上的布美他尼抑制位点相同(R.J.特纳、J.N.乔治和B.J.鲍姆,《膜生物学杂志》94:143 - 152,1986)。高亲和力布美他尼结合对[Na]和[K]均呈现双曲线依赖性,这与钠/布美他尼和钾/布美他尼的结合化学计量比为1:1以及钠的K0.5值约为33 mM和钾的K0.5值约为23 mM一致。相比之下,对[Cl]的依赖性是双相的,布美他尼结合在氯化物浓度从0增加到5 mM时增加,此后朝着基线水平下降。对氯化物的这种后一种抑制作用的Scatchard分析表明其与布美他尼存在竞争性相互作用,这与早期表明布美他尼在氯化物位点抑制钠/钾/氯共转运的迹象一致。然而,对各种阴离子对布美他尼结合和22Na转运影响的研究表明,这两个过程的特异性之间相关性较差,这表明抑制性氯化物位点不是氯化物转运位点。