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Research ArticleArticle

Regulation of Pregnane X Receptor (PXR) Function and UGT1A1 Gene Expression by Posttranslational Modification of PXR Protein

Junko Sugatani, Takahiro Uchida, Masatoshi Kurosawa, Masahiko Yamaguchi, Yasuhiro Yamazaki, Akira Ikari and Masao Miwa
Drug Metabolism and Disposition October 2012, 40 (10) 2031-2040; DOI: https://doi.org/10.1124/dmd.112.046748
Junko Sugatani
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Takahiro Uchida
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Masatoshi Kurosawa
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Masahiko Yamaguchi
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Yasuhiro Yamazaki
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Akira Ikari
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Masao Miwa
Department of Pharmaco-Biochemistry and Global Center of Excellence for Innovation in Human Health Sciences (Global COE), School of Pharmaceutical Sciences, University of Shizuoka, Japan
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Abstract

Human UDP-glucuronosyltransferase (UGT) 1A1 is a critical enzyme responsible for detoxification and metabolism of endogenous and exogenous lipophilic compounds such as bilirubin. The present study shows how cyclin-dependent kinase (CDK) inhibitor roscovitine stimulated the expression of UGT1A1 in HepG2 cells. Pregnane X receptor (PXR)-mediated transactivation of UGT1A1 reporter gene was more prominently enhanced by roscovitine, compared with the basal-, constitutive androstane receptor (CAR)-, and aryl hydrocarbon receptor-mediated activities. We determined the regulatory mechanism of UGT1A1 expression through PXR's stimulation by roscovitine. Although phosphomimetic mutations at Thr290 and Thr408 retained the PXR protein in cytoplasm and attenuated the induction of UGT1A1 expression by both roscovitine and rifampicin, a mutation at Ser350 specifically reduced the activity of PXR induced by roscovitine. Immunoprecipitation analysis revealed that the T290D but not T408D mutant protein remained in cytoplasm by forming a complex with heat shock protein 90 and cytoplasmic CAR retention protein, whereas treatment with proteasome inhibitor MG-132 accumulated the T408D mutant protein in cytoplasm. Transfection with anti-CDK2 small interfering RNA (siRNA) but not anti-CDK1 or CDK5 siRNA led to enhanced expression of UGT1A1. S350D yellow fluorescent protein-PXR fusion protein could translocate from cytoplasm to nucleus similar to the wild-type protein but was detected as an acetylated protein, whose binding with retinoid X receptor (RXR) and histone deacetylase was impaired. Cotransfection with coactivator steroid receptor coactivator (SRC) 2 but not SRC-1 partly recovered its PXR activity. These results indicate that roscovitine stimulated the expression of UGT1A1 by inhibiting CDK2, which phosphorylated PXR at Ser350 to suppress binding with RXR and coactivator and maintain the acetylation of PXR protein.

Footnotes

  • This work was supported by the Global Center of Excellence Program from the Ministry of Education, Culture, Sports, Science and Technology, Japan; and the Grant-in-Aid for Scientific Research from the Ministry of Education, Culture, Sports, Science and Technology, Japan [Grants 19590070, 19590151, 21590170, 22590068].

  • Article, publication date, and citation information can be found at http://dmd.aspetjournals.org.

    http://dx.doi.org/10.1124/dmd.112.046748.

  • ABBREVIATIONS:

    CAR
    constitutive androstane receptor
    NR1
    nuclear receptor subfamily 1
    PXR
    pregnane X receptor
    UGT
    UDP-glucuronosyltransferase
    SN-38
    7-ethyl-10-hydroxycamptothecin
    PBREM
    phenobarbital-responsive enhancer module
    AhR
    aryl hydrocarbon receptor
    HGF
    hepatocyte growth factor
    CDK
    cyclin-dependent kinase
    siRNA
    small interfering RNA
    RXR
    retinoid X receptor
    CCRP
    cytoplasmic CAR retention protein
    Hsp
    heat shock protein
    MG-132
    N-(benzyloxycarbonyl)leucinylleucinylleucinal
    SRC
    steroid receptor coactivator
    ARNT
    aryl hydrocarbon nuclear translocator
    GST
    glutathione transferase
    YFP
    yellow fluorescent protein
    PCR
    polymerase chain reaction
    pEYFP
    enhanced yellow fluorescent protein
    GFP
    green fluorescent protein
    HDAC
    histone deacetylase
    DMSO
    dimethyl sulfoxide
    LBD
    ligand-binding domain
    SR12813
    tetra-ethyl 2-(3,5-di-tert-butyl-4-hydroxyphenyl)ethenyl-1,1-bisphosphonate
    PKA
    protein kinase A
    PKC
    protein kinase C
    Ct
    cycle threshold.

  • Received May 13, 2012.
  • Accepted July 24, 2012.
  • Copyright © 2012 by The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 40 (10)
Drug Metabolism and Disposition
Vol. 40, Issue 10
1 Oct 2012
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Research ArticleArticle

POSTTRANSLATIONAL MODIFICATION OF PXR PROTEIN

Junko Sugatani, Takahiro Uchida, Masatoshi Kurosawa, Masahiko Yamaguchi, Yasuhiro Yamazaki, Akira Ikari and Masao Miwa
Drug Metabolism and Disposition October 1, 2012, 40 (10) 2031-2040; DOI: https://doi.org/10.1124/dmd.112.046748

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Research ArticleArticle

POSTTRANSLATIONAL MODIFICATION OF PXR PROTEIN

Junko Sugatani, Takahiro Uchida, Masatoshi Kurosawa, Masahiko Yamaguchi, Yasuhiro Yamazaki, Akira Ikari and Masao Miwa
Drug Metabolism and Disposition October 1, 2012, 40 (10) 2031-2040; DOI: https://doi.org/10.1124/dmd.112.046748
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