Garty H, Civan M M
Department of Membrane Research, Weizmann Institute of Science, Rehovot, Israel.
J Membr Biol. 1987;99(2):93-101. doi: 10.1007/BF01871229.
86Rb+ fluxes have been measured in suspensions of vesicles prepared from the epithelium of toad urinary bladder. A readily measurable barium-sensitive, ouabain-insensitive component has been identified; the concentration of external Ba2+ required for half-maximal inhibition was 0.6 mM. The effects of externally added cations on 86Rb+ influx and efflux have established that this pathway is conductive, with a selectivity for K+, Rb+ and Cs+ over Na+ and Li+. The Rb+ uptake is inversely dependent on external pH, but not significantly affected by internal Ca2+ or external amiloride, quinine, quinidine or lidocaine. It is likely, albeit not yet certain, that the conductive Rb+ pathway is incorporated in basolateral vesicles oriented right-side-out. It is also not yet clear whether this pathway comprises the principle basolateral K+ channel in vivo, and that its properties have been unchanged during the preparative procedures. Subject to these caveats, the data suggest that the inhibition by quinidine of Na+ transport across toad bladder does not arise primarily from membrane depolarization produced by a direct blockage of the basolateral channels. It now seems more likely that the quinidine-induced elevation of intracellular Ca2+ activity directly blocks apical Na+ entry.
已对从蟾蜍膀胱上皮制备的囊泡悬浮液中的⁸⁶Rb⁺通量进行了测量。已鉴定出一种易于测量的对钡敏感、对哇巴因不敏感的成分;半最大抑制所需的外部Ba²⁺浓度为0.6 mM。外部添加的阳离子对⁸⁶Rb⁺流入和流出的影响表明,该途径具有导电性,对K⁺、Rb⁺和Cs⁺的选择性高于Na⁺和Li⁺。Rb⁺摄取与外部pH呈负相关,但不受内部Ca²⁺或外部氨氯地平、奎宁、奎尼丁或利多卡因的显著影响。尽管尚不确定,但传导性Rb⁺途径可能包含在外侧向外的基底外侧囊泡中。目前也不清楚该途径是否包含体内主要的基底外侧K⁺通道,以及其特性在制备过程中是否保持不变。基于这些注意事项,数据表明奎尼丁对蟾蜍膀胱Na⁺转运的抑制作用并非主要源于基底外侧通道直接阻断产生的膜去极化。现在看来更有可能的是,奎尼丁诱导的细胞内Ca²⁺活性升高直接阻断了顶端Na⁺的进入。