Literature DB >> 22467028

Development of humanized steroid and xenobiotic receptor mouse by homologous knock-in of the human steroid and xenobiotic receptor ligand binding domain sequence.

Katsuhide Igarashi1, Satoshi Kitajima, Ken-ichi Aisaki, Kentaro Tanemura, Yuhji Taquahashi, Noriko Moriyama, Eriko Ikeno, Nae Matsuda, Yumiko Saga, Bruce Blumberg, Jun Kanno.   

Abstract

The human steroid and xenobiotic receptor (SXR), (also known as pregnane X receptor PXR, and NR1I2) is a low affinity sensor that responds to a variety of endobiotic, nutritional and xenobiotic ligands. SXR activates transcription of Cytochrome P450, family 3, subfamily A (CYP3A) and other important metabolic enzymes to up-regulate catabolic pathways mediating xenobiotic elimination. One key feature that demarcates SXR from other nuclear receptors is that the human and rodent orthologues exhibit different ligand preference for a subset of toxicologically important chemicals. This difference leads to a profound problem for rodent studies to predict toxicity in humans. The objective of this study is to generate a new humanized mouse line, which responds systemically to human-specific ligands in order to better predict systemic toxicity in humans. For this purpose, the ligand binding domain (LBD) of the human SXR was homologously knocked-in to the murine gene replacing the endogenous LBD. The LBD-humanized chimeric gene was expressed in all ten organs examined, including liver, small intestine, stomach, kidney and lung in a pattern similar to the endogenous gene expressed in the wild-type (WT) mouse. Quantitative reverse transcription-polymerase chain reaction (RT-PCR) analysis showed that the human-selective ligand, rifampicin induced Cyp3a11 and Carboxylesterase 6 (Ces6) mRNA expression in liver and intestine, whereas the murine-selective ligand, pregnenolone-16-carbonitrile did not. This new humanized mouse line should provide a useful tool for assessing whole body toxicity, whether acute, chronic or developmental, induced by human selective ligands themselves and subsequently generated metabolites that can trigger further toxic responses mediated secondarily by other receptors distributed body-wide.

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Year:  2012        PMID: 22467028     DOI: 10.2131/jts.37.373

Source DB:  PubMed          Journal:  J Toxicol Sci        ISSN: 0388-1350            Impact factor:   2.196


  6 in total

1.  Isoform-Specific Regulation of Mouse Carboxylesterase Expression and Activity by Prototypical Transcriptional Activators.

Authors:  Angela A Baker; Grace L Guo; Lauren M Aleksunes; Jason R Richardson
Journal:  J Biochem Mol Toxicol       Date:  2015-07-15       Impact factor: 3.642

Review 2.  Small-molecule modulators of PXR and CAR.

Authors:  Sergio C Chai; Milu T Cherian; Yue-Ming Wang; Taosheng Chen
Journal:  Biochim Biophys Acta       Date:  2016-02-24

3.  Role of pregnane X receptor and aryl hydrocarbon receptor in transcriptional regulation of pxr, CYP2, and CYP3 genes in developing zebrafish.

Authors:  Akira Kubota; Jared V Goldstone; Benjamin Lemaire; Matthew Takata; Bruce R Woodin; John J Stegeman
Journal:  Toxicol Sci       Date:  2014-11-25       Impact factor: 4.849

Review 4.  Strategies for developing pregnane X receptor antagonists: Implications from metabolism to cancer.

Authors:  Sergio C Chai; William C Wright; Taosheng Chen
Journal:  Med Res Rev       Date:  2019-11-28       Impact factor: 12.944

5.  Effects of Vitamin K₂ on the Expression of Genes Involved in Bile Acid Synthesis and Glucose Homeostasis in Mice with Humanized PXR.

Authors:  Halima Sultana; Kimika Watanabe; Md Masud Rana; Rie Takashima; Ai Ohashi; Michio Komai; Hitoshi Shirakawa
Journal:  Nutrients       Date:  2018-07-27       Impact factor: 5.717

6.  CRISPR-Cas9-Mutated Pregnane X Receptor (pxr) Retains Pregnenolone-induced Expression of cyp3a65 in Zebrafish (Danio rerio) Larvae.

Authors:  Matthew C Salanga; Nadja R Brun; Rene D Francolini; John J Stegeman; Jared V Goldstone
Journal:  Toxicol Sci       Date:  2020-03-01       Impact factor: 4.849

  6 in total

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