Molecular aspects of renal tubular handling and regulation of inorganic sulfate.The renal proximal tubular reabsorption of sulfate plays an important role in the maintenance of sulfate homeostasis. Two different renal sulfate transport systems have been identified and characterized at the molecular level in the past few years: NaSi-1 and Sat-1. NaSi-1 belongs to a Na+-coupled transporter family comprising the Na+-dicarboxylate transporters and the recently characterized SUT1 sulfate transporter. NaSi-1 is a Na+-sulfate cotransporter located exclusively in the brush border membrane of renal proximal tubular and ileal cells. Recently, NaSi-1 was shown to be regulated at the protein and mRNA level by a number of factors, such as vitamin D, die...
Sulfate is the fourth most abundant anion in human plasma that is essential for numerous physiologic...
ion exchanger in rat kidney. Am. J. Physiol. 275 (Renal Physiol. 44): F79–F87, 1998.—The rat liver s...
The kinetics of sulfate uptake were studied in basolateral membrane vesicles from rat renal cortex. ...
Sulfate (SO42-) is an important anion regulating many metabolic and cellular processes. Maintenance ...
All cells require inorganic sulfate for normal function. Sulfate is among the most important macronu...
This review summarizes the physiological roles of the renal sulfate transporters NaS1 (Slc13a1) and ...
This review will briefly summarize current knowledge on the renal anion transporters sodium-sulfate ...
Inorganic sulfate is one of the most abundant anions in mammalian plasma and is essential for proper...
Sulfate homeostasis, NaSi-1 cotransporter, and SAT-1 exchanger expression in chronic renal failure i...
NaSi-1 is a Na+-sulfate cotransporter expressed on the apical membrane of the renal proximal tubule ...
Note:Inorganic sulfate is both the end product of sulfur amino acid metabolism and substrate for var...
Renal reabsorption of inorganic sulfate changes during growth and development. We have studied the e...
Anion transporters NaS1 (SLC13A1) and Sat1 (SLC26A1) mediate sulfate (re)absorption across renal pro...
Sulphate (SO42-) plays an essential role during growth, development, and cellular metabolism. Recent...
Heavy metal intoxication leads to a number of reabsorptive and secretory defects in renal transport ...
Sulfate is the fourth most abundant anion in human plasma that is essential for numerous physiologic...
ion exchanger in rat kidney. Am. J. Physiol. 275 (Renal Physiol. 44): F79–F87, 1998.—The rat liver s...
The kinetics of sulfate uptake were studied in basolateral membrane vesicles from rat renal cortex. ...
Sulfate (SO42-) is an important anion regulating many metabolic and cellular processes. Maintenance ...
All cells require inorganic sulfate for normal function. Sulfate is among the most important macronu...
This review summarizes the physiological roles of the renal sulfate transporters NaS1 (Slc13a1) and ...
This review will briefly summarize current knowledge on the renal anion transporters sodium-sulfate ...
Inorganic sulfate is one of the most abundant anions in mammalian plasma and is essential for proper...
Sulfate homeostasis, NaSi-1 cotransporter, and SAT-1 exchanger expression in chronic renal failure i...
NaSi-1 is a Na+-sulfate cotransporter expressed on the apical membrane of the renal proximal tubule ...
Note:Inorganic sulfate is both the end product of sulfur amino acid metabolism and substrate for var...
Renal reabsorption of inorganic sulfate changes during growth and development. We have studied the e...
Anion transporters NaS1 (SLC13A1) and Sat1 (SLC26A1) mediate sulfate (re)absorption across renal pro...
Sulphate (SO42-) plays an essential role during growth, development, and cellular metabolism. Recent...
Heavy metal intoxication leads to a number of reabsorptive and secretory defects in renal transport ...
Sulfate is the fourth most abundant anion in human plasma that is essential for numerous physiologic...
ion exchanger in rat kidney. Am. J. Physiol. 275 (Renal Physiol. 44): F79–F87, 1998.—The rat liver s...
The kinetics of sulfate uptake were studied in basolateral membrane vesicles from rat renal cortex. ...