Chloride conductance of CFTR facilitates basal Cl−/HCO3−exchange in the villous epithelium of intact murine duodenum

Author:

Simpson Janet E.,Gawenis Lara R.,Walker Nancy M.,Boyle Kathryn T.,Clarke Lane L.

Abstract

Villi of the proximal duodenum are situated for direct exposure to gastric acid chyme. However, little is known about active bicarbonate secretion across villi that maintains the protective alkaline mucus barrier, a process that may be compromised in cystic fibrosis (CF), i.e., in the absence of a functional CF transmembrane conductance regulator (CFTR) anion channel. We investigated Cl/HCO3exchange activity across the apical membrane of epithelial cells located at the midregion of villi in intact duodenal mucosa from wild-type (WT) and CF mice using the pH-sensitive dye BCECF. Under basal conditions, the Cl/HCO3exchange rate was reduced by ∼35% in CF compared with WT villous epithelium. Cl/HCO3exchange in WT and CF villi responded similarly to inhibitors of anion exchange, and membrane depolarization enhanced rates of Clout/HCO3inexchange in both epithelia. In anion substitution studies, anionin/HCO3outexchange rates were greater in WT epithelium using Clor NO3, but decreased to the level of the CF epithelium using the CFTR-impermeant anion, SO42−. Similarly, treatment of WT epithelium with the CFTR-selective blocker glybenclamide decreased the Cl/HCO3exchange rate to the level of CF epithelium. The mRNA expression of Slc26a3 (downregulated in adenoma) and Slc26a6 (putative anion exchanger-1) was similar between WT and CF duodena. From these studies of murine duodenum, we conclude 1) characteristics of Cl/HCO3exchange in the villous epithelium are most consistent with Slc26a6 activity, and 2) Clchannel activity of CFTR facilitates apical membrane Clin/HCO3outexchange by providing a Cl“leak” under basal conditions.

Publisher

American Physiological Society

Subject

Physiology (medical),Gastroenterology,Hepatology,Physiology

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