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Identification and localization of sodium-phosphate cotransporters in hepatocytes and cholangiocytes of rat liver

Authors :
Frei, Pascal
Gao, Bo
Hagenbuch, Bruno
Mate, Alfonso
Biber, Jurg
Murer, Heini
Meier, Peter J.
Stieger, Bruno
Source :
The American Journal of Physiology. April, 2005, Vol. 288 Issue 4, pG771, 8 p.
Publication Year :
2005

Abstract

Hepatocytes and cholangiocytes release ATP into bile, where it is rapidly degraded into adenosine and [P.sub.i]. In rat, biliary [P.sub.i] concentration (0.01 mM) is ~100-fold and 200-fold lower than in hepatocytes and plasma, respectively, indicating active reabsorption of biliary [P.sub.i]. We aimed to functionally characterize canalicular [P.sub.i] reabsorption in rat liver and to identify the involved [P.sub.i] transport system(s). [P.sub.i] transport was determined in isolated rat canalicular liver plasma membrane (LPM) vesicles using a rapid membrane filtration technique. Identification of putative [P.sub.i] transporters was performed with RT-PCR from liver mRNA. Phosphate transporter protein expression was confirmed by Western blotting in basolateral and canalicular LPM and by immunofluorescence in intact liver. Transport studies in canalicular LPM vesicles demonstrated sodium-dependent [P.sub.i] uptake. Initial [P.sub.i] uptake rates were saturable with increasing [P.sub.i] concentrations, exhibiting an apparent [K.sub.m] value of ~11 [micro]M. [P.sub.i] transport was stimulated by an acidic extravesicular pH and by an intravesicular negative membrane potential. These data are compatible with transport characteristics of sodium-phosphate cotransporters NaPi-IIb, PiT-1, and PiT-2, of which the mRNAs were detected in rat liver. On the protein level, NaPi-IIb was detected at the canalicular membrane of hepatocytes and at the brush-border membrane of cholangiocytes. In contrast, PiT-1 and PiT-2 were detected at the basolateral membrane of hepatocytes. We conclude that NaPi-IIb is most probably involved in the reabsorption of [P.sub.i] from primary hepatic bile and thus might play an important role in the regulation of biliary [P.sub.i] concentration. NaPi; PiT; bile formation; transport

Details

Language :
English
ISSN :
00029513
Volume :
288
Issue :
4
Database :
Gale General OneFile
Journal :
The American Journal of Physiology
Publication Type :
Academic Journal
Accession number :
edsgcl.131905930