Literature DB >> 9880528

Heterologous expression and functional characterization of a mouse renal organic anion transporter in mammalian cells.

K Kuze1, P Graves, A Leahy, P Wilson, H Stuhlmann, G You.   

Abstract

Organic anion transporters play an essential role in eliminating a wide range of organic anions including endogenous compounds, xenobiotics, and their metabolites from kidney, thereby preventing their potentially toxic effects within the body. The goal of this study was to extend our previous study on the functional characterization and post-translational modification of a mouse kidney organic anion transporter (mOAT), in a mammalian cell system, COS-7 cells. The transporter-mediated p-aminohippurate (PAH) uptake was saturable, probenecid-sensitive, and inhibited by a wide range of organic anions including vitamins, anti-hypertensive drugs, anti-tumor drugs, and anti-inflammatory drugs. Tunicamycin, an inhibitor of asparagine-linked glycosylation, significantly inhibited the transport activity. Immunofluorescence provided evidence that most of the protein remained in the intracellular compartment in tunicamycin-treated cells. Diethyl pyrocarbonate (DEPC), a histidine residue-specific reagent, completely blocked PAH transport. The inhibitory effect by DEPC was significantly protected (90%) by pretreating the cells with excess unlabeled PAH, suggesting that the histidine residues may be close to the PAH binding sites. Finally, in situ mRNA localization was studied in postnatal mouse kidney. The expression was observed in proximal tubules throughout development. We conclude that COS-7 cells may be useful in pharmacological and molecular biological studies of this carrier. The carbohydrate moieties are necessary for the proper trafficking of mOAT to the plasma membrane, and histidine residues appear to be important for the transport function.

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Year:  1999        PMID: 9880528     DOI: 10.1074/jbc.274.3.1519

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  13 in total

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Review 2.  Physiology, structure, and regulation of the cloned organic anion transporters.

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5.  Cysteine residues in the organic anion transporter mOAT1.

Authors:  Kunihiko Tanaka; Fanfan Zhou; Kogo Kuze; Guofeng You
Journal:  Biochem J       Date:  2004-05-15       Impact factor: 3.857

6.  N-Glycosylation is required for Na+-dependent vitamin C transporter functionality.

Authors:  Veedamali S Subramanian; Jonathan S Marchant; Jack C Reidling; Hamid M Said
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Review 8.  Posttranslational Regulation of Organic Anion Transporters by Ubiquitination: Known and Novel.

Authors:  Da Xu; Haoxun Wang; Guofeng You
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9.  Organic anion transporter 3 (Oat3/Slc22a8) knockout mice exhibit altered clearance and distribution of penicillin G.

Authors:  Adam L Vanwert; Rachel M Bailey; Douglas H Sweet
Journal:  Am J Physiol Renal Physiol       Date:  2007-08-08

10.  Mutational analysis of histidine residues in human organic anion transporter 4 (hOAT4).

Authors:  Fanfan Zhou; Zui Pan; Jianjie Ma; Guofeng You
Journal:  Biochem J       Date:  2004-11-15       Impact factor: 3.857

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