Literature DB >> 14752118

Association of the 16-kDa subunit c of vacuolar proton pump with the ileal Na+-dependent bile acid transporter: protein-protein interaction and intracellular trafficking.

An-Qiang Sun1, Natarajan Balasubramaniyan, Chuan-Ju Liu, Mohammad Shahid, Frederick J Suchy.   

Abstract

The rat ileal apical sodium-dependent bile acid transporter (Asbt) transports conjugated bile acids in a Na+-dependent fashion and localizes specifically to the apical surface of ileal enterocytes. The mechanisms that target organic anion transporters to different domains of the ileal enterocyte plasma membrane have not been well defined. Previous studies (Sung, A.-Q., Arresa, M. A., Zeng, L., Swaby, I'K., Zhou, M. M., and Suchy, F. J. (2001) J. Biol. Chem. 276, 6825-6833) from our laboratory demonstrated that rat Asbt follows an apical sorting pathway that is brefeldin A-sensitive and insensitive to protein glycosylation, monensin treatment, and low temperature shift. Furthermore, a 14-mer signal sequence that adopts a beta-turn conformation is required for apical localization of rat Asbt. In this study, a vacuolar proton pump subunit (VPP-c, the 16-kDa subunit c of vacuolar H+-ATPase) has been identified as an interacting partner of Asbt by a bacterial two-hybrid screen. A direct protein-protein interaction between Asbt and VPP-c was confirmed in an in vitro pull-down assay and in an in vivo mammalian two-hybrid analysis. Indirect immunofluorescence confocal microscopy demonstrated that the Asbt and VPP-c colocalized in transfected COS-7 and MDCK cells. Moreover, bafilomycin A1 (a specific inhibitor of VPP) interrupted the colocalization of Asbt and VPP-c. A taurocholate influx assay and membrane biotinylation analysis showed that treatment with bafilomycin A1 resulted in a significant decrease in bile acid transport activity and the apical membrane localization of Asbt in transfected cells. Thus, these results suggest that the apical membrane localization of Asbt is mediated in part by the vacuolar proton pump associated apical sorting machinery.

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Year:  2004        PMID: 14752118     DOI: 10.1074/jbc.M312838200

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


  18 in total

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2.  Association of PDZ-containing protein PDZD11 with the human sodium-dependent multivitamin transporter.

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4.  Apical targeting of the P2Y(4) receptor is directed by hydrophobic and basic residues in the cytoplasmic tail.

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5.  Direct methylation of FXR by Set7/9, a lysine methyltransferase, regulates the expression of FXR target genes.

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6.  SUMOylation of the farnesoid X receptor (FXR) regulates the expression of FXR target genes.

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Journal:  J Biol Chem       Date:  2013-04-01       Impact factor: 5.157

7.  Association of TM4SF4 with the human thiamine transporter-2 in intestinal epithelial cells.

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Journal:  Dig Dis Sci       Date:  2013-11-27       Impact factor: 3.199

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10.  Modulation of ileal bile acid transporter (ASBT) activity by depletion of plasma membrane cholesterol: association with lipid rafts.

Authors:  Fadi Annaba; Zaheer Sarwar; Pradeep Kumar; Seema Saksena; Jerrold R Turner; Pradeep K Dudeja; Ravinder K Gill; Waddah A Alrefai
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2007-12-06       Impact factor: 4.052

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