BASOLATERAL K-CHANNELS IN AN INSECT EPITHELIUM - CHANNEL DENSITY, CONDUCTANCE, AND BLOCK BY BARIUM

被引:24
作者
HANRAHAN, JW
WILLS, NK
PHILLIPS, JE
LEWIS, SA
机构
[1] YALE UNIV, SCH MED, DEPT PHYSIOL, B-106 SHM, POB 333, NEW HAVEN, CT 06510 USA
[2] UNIV BRITISH COLUMBIA, DEPT ZOOL, VANCOUVER V6T 2A9, BC, CANADA
关键词
D O I
10.1085/jgp.87.3.443
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
K channels in the basolateral membrane of insect hindgut were studied using current fluctuation analysis and microelectrodes. Locust recta were mounted in Ussing-type chambers containing Cl-free saline and cyclic AMP (cAMP). A transepithelial K current was induced by raising serosal [K] under short-circuit conditions. Adding Ba to the mucosal (luminal) side under these conditions had no effect; however, serosal Ba reversibly inhibited the short-circuit current (Isc), increased transepithelial resistance (Rt), and added a Lorentzian component to power density spectra of the Isc. A nonlinear relationship between corner frequency and serosal [Ba] was observed, which suggests that the rate constant for Ba association with basolateral channels increased as [Ba] was elevated. Microelectrode experiments revealed that the basolateral membrane hyperpolarized when Ba was added: this change in membrane potential could explain the nonlinearity of the 2.pi.fc vs. [Ba] relationship if external Ba sensed about three-quarters of the basolateral membrane field. Conventional microelectrodes were used to determine the correspondence between transepithelially measured current noise and basolateral membrane conductance fluctuations, and ion-sensitive microelectrodes were used to measure intracellular K activity (.alpha.cK). From the relationship between the net electrochemical potential for K across the basolateral membrane and the single channel current calculated from noise analysis, we estimate that the conductance of basolateral K channels is .apprx. 60 pS, and that there are .apprx. 180 million channels per square centimeter of tissue area.
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页码:443 / 466
页数:24
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