Control of potassium transport by turtle colon: role of membrane potential

Author:

Halm D. R.,Dawson D. C.

Abstract

To more clearly define the role of the transepithelial electrical potential difference (V m----s), potassium permeability, and sodium-potassium pump rate in transcellular potassium transport by isolated turtle colon, we measured transmural potassium fluxes under open-circuit conditions in the presence and absence of putative blockers of potassium transport: amiloride and barium. The results were consistent with the notion that V m----s is a major determinant of cellular potassium secretion, whereas active potassium absorption is insensitive to changes in V m----s. These observations suggest that “coupling” between colonic sodium absorption and potassium secretion in vivo could be due primarily to the effect of the lumen negative V m----s on transcellular secretory potassium flow. Amiloride-induced inhibition of potassium secretion appeared to be due to the reductions in V m----s and sodium-potassium pump rate that accompanied the inhibition of active sodium absorption.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

Cited by 18 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Na+-Coupled Nutrient Cotransport Induced Luminal Negative Potential and Claudin-15 Play an Important Role in Paracellular Na+ Recycling in Mouse Small Intestine;International Journal of Molecular Sciences;2020-01-07

2. Physiologic Influences of Transepithelial K+ Secretion;Physiology in Health and Disease;2020

3. Physiologic Influences of Transepithelial K+ Secretion;Ion Channels and Transporters of Epithelia in Health and Disease;2015-12-15

4. Colonic potassium handling;Pflügers Archiv - European Journal of Physiology;2010-02-10

5. Chapter 11 Electrogenic transepithelial Na+ transport in the colon;Current Topics in Membranes;2000

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