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PMID: 671529 Published · ppublish English Journal Article

Energy-dependence of phlorizin binding to isolated renal microvillus membranes. Evidence concerning the mechanism of coupling between the electrochemical Na+ gradient the sugar transport.

The Journal of membrane biology ·Vol. 42 ·No. 1 ·1978-07-21 ·Pages 81-98

Aronson PS

Abstract

In order to elucidate the mechanism by which the electrochemical Na+ gradient energizes glucose transport, the energy-dependence of high affinity phlorizin binding to isolated renal microvillus membrane vesicles was examined. Phlorizin is a competitive inhibitor of glucose transport but is not itself transported. Extravesicular Na+ accelerated the rate of phlorizin binding and inhibited the rate of dissociation of bound glycoside. Maneuvers to enhance intravesicular electronegativity stimulated phlorizin uptake and those to enhance intravesicular electronegativity stimulated phlorizin uptake and those to enhance intravesicular electropositivity inhibited. However, alterations in electrical potential were without effect on the rate release of bound phlorizin. Intravesicular Na+ inhibited the phlorizin uptake rate. The results are consistent with a model of the glucose transporter in which (i) Na+ increases the binding affinity of the carrier, (ii) the free carrier is negatively charged, and (iii) the translocation of the carrier is inhibited by the binding of Na+ in the absence of sugar. The electrochemical Na+ gradient thus energizes both glucose transport and phlorizin binding through its effect on the affinity and appearance of the free carrier at the membrane surface rather than through an effect on sugar translocation per se.

MeSH Terms
Animals Binding Sites Glucose/metabolism Kidney/metabolism Male Membrane Potentials Membranes/metabolism Phlorhizin/metabolism Rabbits Sodium/pharmacology Valinomycin/pharmacology
Chemicals
Valinomycin Sodium Phlorhizin Glucose
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Aronson P S
References (30)
30 references, click to expand
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Article Info
Journal
The Journal of membrane biology
Abbr.
J Membr Biol
ISSN
0022-2631
Published
1978-07-21
Pages
81-98
Language
English
Region
United States
NLM ID
0211301
Subset
IM
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