Literature DB >> 19617467

A systematic analysis of predicted phosphorylation sites within the human pregnane X receptor protein.

Kristin Lichti-Kaiser1, Dan Brobst, Chenshu Xu, Jeff L Staudinger.   

Abstract

The pregnane X receptor (PXR, NR1I2) regulates the expression of genes that encode drug-metabolizing enzymes and drug transporter proteins in liver and intestine. Understanding the molecular mechanisms that modulate PXR activity is therefore critical for the development of effective therapeutic strategies. Several recent studies have implicated the activation of kinase signaling pathways in the regulation of PXR biological activity, although direct evidence and molecular mechanisms are currently lacking. We therefore sought to characterize potential phosphorylation sites within the PXR protein by use of a rational, comprehensive, and systematic site-directed mutagenesis approach to generate phosphomimetic mutations (Ser/Thr --> Asp) and phospho-deficient mutations (Ser/Thr --> Ala) at 18 predicted consensus kinase recognition sequences in the human PXR protein. Here, we identify amino acid residues Ser8, Thr57, Ser208, Ser305, Ser350, and Thr408 as being critical for biological activity of the PXR protein. Mutations at positions 57 and 408 abolish ligand-inducible PXR activity. Mutations in the extreme N terminus and in the PXR ligand-binding domain at positions Ser8, Ser305, Ser350, and Thr408 decrease the ability of PXR to form heterodimers with retinoid X receptor alpha. Mutations at positions Ser208, Ser305, Ser350, and Thr408 alter PXR-protein cofactor interactions. Finally, the subcellular localization of the PXR protein is profoundly affected by mutations at position Thr408. These data suggest that PXR activity can potentially be regulated by phosphorylation at specific amino acid residues within several predicted consensus kinase recognition sequences to differentially affect PXR biological activity.

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Year:  2009        PMID: 19617467      PMCID: PMC2766221          DOI: 10.1124/jpet.109.157180

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  33 in total

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2.  Repression of PXR-mediated induction of hepatic CYP3A gene expression by protein kinase C.

Authors:  Xunshan Ding; Jeff L Staudinger
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3.  An orphan nuclear receptor activated by pregnanes defines a novel steroid signaling pathway.

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4.  Role of NF-kappaB in regulation of PXR-mediated gene expression: a mechanism for the suppression of cytochrome P-450 3A4 by proinflammatory agents.

Authors:  Xinsheng Gu; Sui Ke; Duan Liu; Tao Sheng; Paul E Thomas; Arnold B Rabson; Michael A Gallo; Wen Xie; Yanan Tian
Journal:  J Biol Chem       Date:  2006-04-10       Impact factor: 5.157

Review 5.  Regulation of drug-metabolizing enzymes and transporters in inflammation.

Authors:  Alison E Aitken; Terrilyn A Richardson; Edward T Morgan
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6.  Mutual repression between steroid and xenobiotic receptor and NF-kappaB signaling pathways links xenobiotic metabolism and inflammation.

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7.  A phosphomimetic mutation at threonine-57 abolishes transactivation activity and alters nuclear localization pattern of human pregnane x receptor.

Authors:  Satyanarayana R Pondugula; Cynthia Brimer-Cline; Jing Wu; Erin G Schuetz; Rakesh K Tyagi; Taosheng Chen
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9.  Cytoplasmic localization of pregnane X receptor and ligand-dependent nuclear translocation in mouse liver.

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  27 in total

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Review 3.  Pregnane X receptor and drug-induced liver injury.

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Review 6.  Mechanisms of xenobiotic receptor activation: Direct vs. indirect.

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Journal:  Biochim Biophys Acta       Date:  2016-02-10

Review 7.  Activation of xenobiotic receptors: driving into the nucleus.

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8.  Site-directed mutagenesis of human cytosolic sulfotransferase (SULT) 2B1b to phospho-mimetic Ser348Asp results in an isoform with increased catalytic activity.

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9.  Role of c-Jun-N-Terminal Kinase in Pregnane X Receptor-Mediated Induction of Human Cytochrome P4503A4 In Vitro.

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Review 10.  Post-translational and post-transcriptional modifications of pregnane X receptor (PXR) in regulation of the cytochrome P450 superfamily.

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