CAMP-ACTIVATED APICAL MEMBRANE CHLORIDE CHANNELS IN NECTURUS GALLBLADDER EPITHELIUM - CONDUCTANCE, SELECTIVITY, AND BLOCK

被引:36
作者
COPELLO, J
HEMING, TA
SEGAL, Y
REUSS, L
机构
[1] UNIV TEXAS,MED BRANCH,DEPT PHYSIOL & BIOPHYS,GALVESTON,TX 77550
[2] UNIV TEXAS,MED BRANCH,DEPT INTERNAL MED,GALVESTON,TX 77550
关键词
D O I
10.1085/jgp.102.2.177
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Elevation of intracellular cAMP levels in Necturus gallbladder epithelium (NGB) induces an apical membrane Cl- conductance (G(Cl)a). Its characteristics (i.e., magnitude, anion selectivity, and block) were studied with intracellular microelectrode techniques. Under control conditions, the apical membrane conductance (G(a)) was 0.17 mS.cm-2, primarily ascribable to G(K)a. With elevation of cell cAMP to maximum levels, Ga increased to 6.7 mS.cm-2 and became anion selective, with the permeability sequence SCN- > NO3- > I- > Br- > Cl- >> SO42- approximately gluconate approximately cyclamate. G(Cl)a, was not affected by the putative Cl- channel blockers Cu2+, DIDS, DNDS, DPC, furosemide, IAA-94, MK-196, NPPB, SITS, verapamil, and glibenclamide. To characterize the cAMP-activated Cl- channels, patch-clamp studies were conducted on the apical membrane of enzyme-treated gallbladders or on dissociated cells from tissues exposed to both theophylline and forskolin. Two kinds of Cl- channels were found. With approximately 100 mM Cl- in both bath and pipette, the most frequent channel had a linear current-voltage relationship with a slope conductance of approximately 10 pS. The less frequent channel was outward rectifying with slope conductances of approximately 10 and 20 pS at -40 and 40 mV, respectively. The Cl- channels colocalized with apical maxi-K+ channels in 70% of the patches. The open probability (P(o)) of both kinds of Cl- channels was variable from patch to patch (0.3 on average) and insensitive to [Ca2+], membrane voltage, and pH. The channel density (approximately 0.3/patch) was one to two orders of magnitude less than that required to account for G(Cl)a. However, addition of 250 U/ml protein kinase A plus 1 mM ATP to the cytosolic side of excised patches increased the density of the linear 10-pS Cl-channels more than 10-fold to four per patch and the mean P(o) to 0.5, close to expectations from G(Cl)a. The permeability sequence and blocker insensitivity of the PKA-activated channels were identical to those of the apical membrane. These data strongly suggest that 10-pS Cl- channels are responsible for the cAMP-induced increase in apical membrane conductance of NGB epithelium.
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页码:177 / 199
页数:23
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