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Molecular Pharmacology

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Research ArticleArticle

Differential Expression and Function of Alternative Splicing Variants of Human Liver X Receptor α

Kaori Endo-Umeda, Shigeyuki Uno, Ko Fujimori, Yoshikazu Naito, Koichi Saito, Kenji Yamagishi, Yangsik Jeong, Hiroyuki Miyachi, Hiroaki Tokiwa, Sachiko Yamada and Makoto Makishima
Molecular Pharmacology June 2012, 81 (6) 800-810; DOI: https://doi.org/10.1124/mol.111.077206
Kaori Endo-Umeda
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Shigeyuki Uno
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Ko Fujimori
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Yoshikazu Naito
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Koichi Saito
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Kenji Yamagishi
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Yangsik Jeong
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Hiroyuki Miyachi
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Hiroaki Tokiwa
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Sachiko Yamada
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Makoto Makishima
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Abstract

The liver X receptor α (LXRα) is a nuclear receptor that is involved in regulation of lipid metabolism, cellular proliferation and apoptosis, and immunity. In this report, we characterize three human LXRα isoforms with variation in the ligand-binding domain (LBD). While examining the expression of LXRα3, which lacks 60 amino acids within the LBD, we identified two novel transcripts that encode LXRα-LBD variants (LXRα4 and LXRα5). LXRα4 has an insertion of 64 amino acids in helix 4/5, and LXRα5 lacks the C-terminal helices 7 to 12 due to a termination codon in an additional exon that encodes an intron in the LXRα1 mRNA. LXRα3, LXRα4, and LXRα5 were expressed at lower levels compared with LXRα1 in many human tissues and cell lines. We also observed weak expression of LXRα3 and LXRα4 in several tissues of mice. LXR ligand treatment induced differential regulation of LXRα isoform mRNA expression in a cell type-dependent manner. Whereas LXRα3 had no effect, LXRα4 has weak transactivation, retinoid X receptor (RXR) heterodimerization, and coactivator recruitment activities. LXRα5 interacted with a corepressor in a ligand-independent manner and inhibited LXRα1 transactivation and target gene expression when overexpressed. Combination of LXRα5 cotransfection and LXRα antagonist treatment produced additive effects on the inhibition of ligand-dependent LXRα1 activation. We constructed structural models of the LXRα4-LBD and its complexes with ligand, RXR-LBD, and coactivator peptide. The models showed that the insertion in the LBD can be predicted to disrupt RXR heterodimerization. Regulation of LXRα pre-mRNA splicing may be involved in the pathogenesis of LXRα-related diseases.

Footnotes

  • This work was supported in part by the Ministry of Education, Culture, Sports, Science, and Technology of Japan [Grant-in-Aid for Scientific Research on Priority Areas 18077005] (to M.M.).

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

    http://dx.doi.org/10.1124/mol.111.077206.

  • ABBREVIATIONS:

    LXR
    liver X receptor
    LXRE
    LXR-responsive element
    RXR
    retinoid X receptor
    ABC
    ATP-binding cassette
    CYP7A
    cholesterol 7α-hydroxylase
    SREBP
    sterol regulatory element-binding protein
    LBD
    ligand-binding domain
    T0901317
    N-(2,2,2-trifluoro-ethyl)-N-[4–(2,2,2-trifluoro-1-hydroxy-1-trifluoromethyl-ethyl)-phenyl]-benzenesulfonamide
    GW3965
    3-[3-[N-(2-chloro-3-trifluoromethylbenzyl)-(2,2-diphenylethyl)amino]propyloxy]phenylacetic acid hydrochloride
    HEK
    human embryonic kidney
    FBS
    fetal bovine serum
    PCR
    polymerase chain reaction
    siRNA
    small interfering RNA
    CMV
    cytomegalovirus
    EMSA
    electrophoretic mobility shift assay
    DBD
    DNA-binding domain
    AF2
    activation function 2
    SMRT
    silencing mediator of retinoic acid and thyroid hormone receptor
    N-CoR
    nuclear receptor corepressor
    SRC
    steroid receptor coactivator
    DRIP205
    vitamin D receptor-interacting protein 205
    PPAR
    peroxisome proliferator-activated receptor.

  • Received December 14, 2011.
  • Accepted March 7, 2012.
  • Copyright © 2012 The American Society for Pharmacology and Experimental Therapeutics
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Molecular Pharmacology: 81 (6)
Molecular Pharmacology
Vol. 81, Issue 6
1 Jun 2012
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Research ArticleArticle

Liver X Receptor α Ligand-Binding Domain Variants

Kaori Endo-Umeda, Shigeyuki Uno, Ko Fujimori, Yoshikazu Naito, Koichi Saito, Kenji Yamagishi, Yangsik Jeong, Hiroyuki Miyachi, Hiroaki Tokiwa, Sachiko Yamada and Makoto Makishima
Molecular Pharmacology June 1, 2012, 81 (6) 800-810; DOI: https://doi.org/10.1124/mol.111.077206

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Research ArticleArticle

Liver X Receptor α Ligand-Binding Domain Variants

Kaori Endo-Umeda, Shigeyuki Uno, Ko Fujimori, Yoshikazu Naito, Koichi Saito, Kenji Yamagishi, Yangsik Jeong, Hiroyuki Miyachi, Hiroaki Tokiwa, Sachiko Yamada and Makoto Makishima
Molecular Pharmacology June 1, 2012, 81 (6) 800-810; DOI: https://doi.org/10.1124/mol.111.077206
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