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Am J Physiol Endocrinol Metab 236: E70-E76, 1979;
0193-1849/79 $5.00
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AJP: Endocrinology and Metabolism, Vol 236, Issue 1, E70-E76
Copyright © 1979 by American Physiological Society

ARTICLES

Anion-stimulated ATPase activity of brush border from rat small intestine

MH Humphreys and LY Chou

Differential centrifugation of rat small intestinal homogenates produced a crude brush border (BB) fraction that was enriched 15-fold for the marker enzymes, alkaline phosphatase and sucrase; contamination with mitochondrial enzymes, monoamine oxidase and succinate dehydrogenase, was minimal. ATP hydrolysis by this BB fraction was stimulated by addition of several anions to the incubation medium: HCO3 and Cl were equally effective in this regard, with NO3, NO2, SO4, and acetate being less stimulatory. SCN and CNO inhibited ATPase activity, whereas the divalent anion SO3 was stimulatory at low concentrations (less than 25 mM) but inhibitory at 100 mM. Maximum anion stimulation was observed at a Mg concentration of 0.5 mM, and pH optimum was 8.5. Kinetic analysis showed that HCO3 increased the Vmax without altering the Km for ATP; the Ka for this effect of HCO3 was 35 mM. This enzyme activity was completely inhibited by 20 mM L-phenylalanine, 10 mM L-cysteine, and 3 mM EDTA, compounds that also inhibited intestinal alkaline phosphatase. These results demonstrate the presence of anion-stimulated ATPase activity in rat small intestinal brush border and suggest that this activity may be related to intestinal alkaline phosphatase. The role of this enzyme in intestinal transport is not known, but could relate to the regulation of intestinal absorption and secretion.


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Y. Akiba, M. Mizumori, P. H. Guth, E. Engel, and J. D. Kaunitz
Duodenal brush border intestinal alkaline phosphatase activity affects bicarbonate secretion in rats
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