High-affinity phlorizin binding to brush border membranes from small intestine: Identity with (a part of) the glucose transport system, dependence on the Na+-gradient, partial purification
Author:
Publisher
Wiley
Subject
General Medicine
Reference33 articles.
1. Phlorizin as a competitive inhibitor of the active transport of sugars by hamster small intestine, in vitro
2. Competitive inhibition of intestinal glucose transport by phlorizin analogs
3. Competitive inhibition of phlorizin binding byd-glucose and the influence of sodium: a study on isolated brush border membrane of rat kidney
4. Inhibition of [3H]phlorizin binding to isolated kidney brush border membranes by phlorizin-like compounds
5. Phlorizin Receptors in Isolated Kidney Brush Border Membranes
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1. Biosynthesis and Assembly of the Largest and Major Intrinsic Polypeptide of the Small Intestinal Brush Borders;Ciba Foundation Symposium 95 - Brush Border Membranes;2008-05-30
2. Mode of Insertion of the Sucrase-Isomaltase Complex in the Intestinal Brush Border Membrane: Implications for the Biosynthesis of this Stalked Intrinsic Membrane Protein;Ciba Foundation Symposium 70 - Development of Mammalian Absorptive Processes;2008-05-30
3. Na + -Coupled Alanine Transport in LLC-PK 1 Cells: The Relationship Between the K m for Na + at Low [Alanine] and Potential Dependence for the System;Journal of Membrane Biology;1998-10-01
4. Sodium leak pathway and substrate binding order in the Na+-glucose cotransporter;Biophysical Journal;1997-11
5. Altered glucose carrier expression: mechanism of intestinal adaptation during streptozocin-induced diabetes in rats;American Journal of Physiology-Gastrointestinal and Liver Physiology;1991-10-01
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