Matsuzaki K, Stokes J B, Schuster V L
Laboratory of Epithelial Transport, University of Iowa, Iowa City 52242.
J Clin Invest. 1988 Jul;82(1):57-64. doi: 10.1172/JCI113601.
Cl self-exchange by the rabbit cortical collecting tubule (CCT) occurs via an apical anion exchanger in series with a basolateral Cl conductance. We studied the effects of organic acids on CCT Cl self-exchange. We found no evidence for transport of acid anions by the self-exchange system. Rather, Cl self-exchange was inhibited by a variety of organic acids. The degree of inhibition correlated with the chloroform/water partition coefficient and was enhanced by lowering pH, indicating inhibition by the lipid-soluble, protonated species. Inhibition by the representative acid iso-butyrate was dose-dependent and showed sidedness (basolateral greater than apical). Iso-butyrate also reversibly reduced transepithelial conductance without altering K permeability, suggesting inhibition of the principal cell basolateral Cl conductance. Because small organic compounds with similar lipid solubilities but no carboxyl group had no effect, both the carboxyl group and the lipid-solubility of organic acids appear to be important. The results are consistent with blockade of chloride channels by organic acids.
兔皮质集合管(CCT)的氯离子自我交换是通过顶端阴离子交换体与基底外侧氯离子电导串联进行的。我们研究了有机酸对CCT氯离子自我交换的影响。我们没有发现自我交换系统转运酸性阴离子的证据。相反,多种有机酸抑制了氯离子自我交换。抑制程度与氯仿/水分配系数相关,并且在降低pH值时增强,表明是脂溶性的质子化形式起抑制作用。代表性的酸异丁酸的抑制作用呈剂量依赖性,并且具有方向性(基底外侧大于顶端)。异丁酸还可逆地降低跨上皮电导而不改变钾通透性,提示其抑制主细胞基底外侧氯离子电导。由于具有相似脂溶性但没有羧基的小有机化合物没有作用,因此有机酸的羧基和脂溶性似乎都很重要。这些结果与有机酸阻断氯离子通道一致。