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PMID: 12220224 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Transport of bile acids in multidrug-resistance-protein 3-overexpressing cells co-transfected with the ileal Na+-dependent bile-acid transporter.

The Biochemical journal ·Vol. 369 ·No. Pt 1 ·2003-01-01 ·Pages 23-30

Zelcer N, Saeki T, Bot I, Kuil A, Borst P

Abstract

Many of the transporters involved in the transport of bile acids in the enterohepatic circulation have been characterized. The basolateral bile-acid transporter of ileocytes and cholangiocytes remains an exception. It has been suggested that rat multidrug resistance protein 3 (Mrp3) fulfills this function. Here we analyse bile-salt transport by human MRP3. Membrane vesicles from insect ( Spodoptera frugiperda ) cells expressing MRP3 show time-dependent uptake of glycocholate and taurocholate. Furthermore, sulphated bile salts were high-affinity competitive inhibitors of etoposide glucuronide transport by MRP3 (IC50 approximately 10 microM). Taurochenodeoxycholate, taurocholate and glycocholate inhibited transport at higher concentrations (IC50 approximately 100, 250 and 500 microM respectively). We used mouse fibroblast-like cell lines derived from mice with disrupted Mdr1a, Mdr1b and Mrp1 genes to generate transfectants that express the murine apical Na+-dependent bile-salt transporter (Asbt) and MRP3. Uptake of glycocholate by these cells is Na+-dependent, with a K(m) and V(max) of 29+/-7 microM and 660 +/- 63 pmol/min per mg of protein respectively and is inhibited by several organic-aniontransport inhibitors. Expression of MRP3 in these cells limits the accumulation of glycocholate and increases the efflux from cells preloaded with taurocholate or glycocholate. In conclusion, we find that MRP3 transports both taurocholate and glycocholate, albeit with low affinity, in contrast with the high-affinity transport by rat Mrp3. Our results suggest that MRP3 is unlikely to be the principal basolateral bile-acid transporter of ileocytes and cholangiocytes, but that it may have a role in the removal of bile acids from the liver in cholestasis.

MeSH Terms
ATP Binding Cassette Transporter, Subfamily B/metabolism ATP-Binding Cassette Transporters/metabolism Animals Bile Acids and Salts/metabolism Biological Transport Carrier Proteins/genetics,metabolism Cell Line Humans Organic Anion Transporters, Sodium-Dependent Spodoptera Symporters Transfection
Chemicals
ATP Binding Cassette Transporter, Subfamily B ATP-Binding Cassette Transporters Bile Acids and Salts Carrier Proteins Organic Anion Transporters, Sodium-Dependent Symporters sodium-bile acid cotransporter multidrug resistance protein 3
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Zelcer Noam
Division of Molecular Biology and Centre of Biomedical Genetics, The Netherlands Cancer Institute, Plesmanlaan 121, 1066 CX Amsterdam, The Netherlands.
Saeki Tohru
Bot Ilse
Kuil Annemieke
Borst Piet
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Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
2003-01-01
Pages
23-30
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1223054
Subset
IM
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