Uptake of Pi into brush-border membrane vesicles isolated from rat small intestine was investigated by a rapid filtration technique. The following results were obtained. 1. At pH 7.4 in the presence of a NaCl gradient across the membrane (sodium concentration in the medium higher than sodium concentration in the vesicles), phosphate was taken up by a saturable transport system, which was competitively inhibited by arsenate. Phosphate entered the same osmotically reactive space as D-glucose, which indicates that transport into the vesicles rather than binding to the membranes was determined. 2. The amount of phosphate taken up initially was increased about fourfold by lowering the pH from 7.4 to 6.0.3. When Na+ was replaced by K+, Rb+ or Cs+...
Brush-border membrane vesicles were isolated from rabbit duodenum by a Mg2+ precipitation method, an...
Despite the importance of extracellular phosphate in many essential biological processes, the mechan...
Publisher Summary: This chapter examines mechanisms involved in small intestinal transport of calciu...
A sodium dependent specific transport system for phosphate is present in the brush border microvilli...
Sodium-dependent transport of inorganic phosphate into brush border membrane vesicles is strongly in...
Studies of luminal and contraluminal membranes isolated from epithelial cells have contributed marke...
Studies on proton and Na+ transport by isolated intestinal and renal brush-border-membrane vesicles ...
Simultaneous occlusion of Na+ and phosphate by the intestinal brush border membrane Na+/phosphate co...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Sodium-dependent phosphate transport in a rat kidney endosomal fraction. An endosome-enriched fracti...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
Transport mechanisms involved in the small intestinal handling of inorganic phosphate and calcium ha...
Basal-lateral plasma membrane vesicles were isolated from rat duodenum and jejunum by a Percoll grad...
Brush-border membrane vesicles were isolated from rabbit duodenum by a Mg2+ precipitation method, an...
Despite the importance of extracellular phosphate in many essential biological processes, the mechan...
Publisher Summary: This chapter examines mechanisms involved in small intestinal transport of calciu...
A sodium dependent specific transport system for phosphate is present in the brush border microvilli...
Sodium-dependent transport of inorganic phosphate into brush border membrane vesicles is strongly in...
Studies of luminal and contraluminal membranes isolated from epithelial cells have contributed marke...
Studies on proton and Na+ transport by isolated intestinal and renal brush-border-membrane vesicles ...
Simultaneous occlusion of Na+ and phosphate by the intestinal brush border membrane Na+/phosphate co...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Inorganic phosphate (P) is crucial for many biological functions, such as energy metabolism, signal ...
Sodium-dependent phosphate transport in a rat kidney endosomal fraction. An endosome-enriched fracti...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
One way to obtain a deeper understanding of the complex function of the small intestinal and renal p...
Transport mechanisms involved in the small intestinal handling of inorganic phosphate and calcium ha...
Basal-lateral plasma membrane vesicles were isolated from rat duodenum and jejunum by a Percoll grad...
Brush-border membrane vesicles were isolated from rabbit duodenum by a Mg2+ precipitation method, an...
Despite the importance of extracellular phosphate in many essential biological processes, the mechan...
Publisher Summary: This chapter examines mechanisms involved in small intestinal transport of calciu...