Xenobiotic nuclear receptors, PXR and CAR, are activated by numerous chemicals and induce the Phase I, II and III clearance pathways through their association with specific transcriptional coactivators. Although some environmental contaminants including those found in the Superfund sites are known to activate PXR, CAR or both in a species-specific manner, the effects of the receptor activation on the toxicity are not clear. The studies proposed in this project are aimed at defining, in molecular terms, how the receptors and their xenobiotic and endobiotic ligands influence physiology by controlling gene expression patterns. The hypothesis is that certain toxic environmental agents activate either PXR and/or CAR, leading to both acute and chronic perturbations of the enterohepatic clearance system, production of supertoxic metabolites and endocrine disruption. To test these ideas, the investigators will combine genomic, molecular genetic, and biochemical approaches to 1) identify environmental toxins that activate PXR and/or CAR using a high-throughput cell-based reporter systems and an in vitro coactivator recruitment assay; 2) create a transgenic mouse line that replaces endogenous PXR with recombinant human PXR in both the liver and intestine to humanize the xenobiotic response over the entire enterohepatic system; 3) determine the contribution of PXR and CAR towards the long-term and acute toxicity of chemicals using knockout and transgenic humanized animals; and 4) identify PXR and CAR target genes that contribute to the toxicogenomic response using DNA oligonucleotide microarray analysis. Taken together, the proposed experiments will uncover details of the molecular mechanisms by which environmental substances found at Superfund sites exert adverse effects and will also provide unique and quantitative tools to predict toxicity.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Hazardous Substances Basic Research Grants Program (NIEHS) (P42)
Project #
2P42ES010337-06
Application #
6897643
Study Section
Special Emphasis Panel (ZES1-SET-A (S6))
Project Start
2005-04-01
Project End
2010-03-31
Budget Start
2005-04-01
Budget End
2006-03-31
Support Year
6
Fiscal Year
2005
Total Cost
$279,187
Indirect Cost
Name
University of California San Diego
Department
Type
DUNS #
804355790
City
La Jolla
State
CA
Country
United States
Zip Code
92093
Tripathi, Anupriya; Debelius, Justine; Brenner, David A et al. (2018) The gut-liver axis and the intersection with the microbiome. Nat Rev Gastroenterol Hepatol 15:397-411
Chen, Shujuan; Tukey, Robert H (2018) Humanized UGT1 Mice, Regulation of UGT1A1, and the Role of the Intestinal Tract in Neonatal Hyperbilirubinemia and Breast Milk-Induced Jaundice. Drug Metab Dispos 46:1745-1755
Desai, Archita P; Mohan, Prashanthinie; Roubal, Anne M et al. (2018) Geographic Variability in Liver Disease-Related Mortality Rates in the United States. Am J Med 131:728-734
Ajmera, Veeral; Park, Charlie C; Caussy, Cyrielle et al. (2018) Magnetic Resonance Imaging Proton Density Fat Fraction Associates With Progression of Fibrosis in Patients With Nonalcoholic Fatty Liver Disease. Gastroenterology 155:307-310.e2
Ahmadian, Maryam; Liu, Sihao; Reilly, Shannon M et al. (2018) ERR? Preserves Brown Fat Innate Thermogenic Activity. Cell Rep 22:2849-2859
Tapper, Elliot B; Loomba, Rohit (2018) Nonalcoholic fatty liver disease, metabolic syndrome, and the fight that will define clinical practice for a generation of hepatologists. Hepatology 67:1657-1659
Tripathi, Anupriya; Debelius, Justine; Brenner, David A et al. (2018) Publisher Correction: The gut-liver axis and the intersection with the microbiome. Nat Rev Gastroenterol Hepatol 15:785
Zhang, Yuqin; Nasser, Victoria; Pisanty, Odelia et al. (2018) A transportome-scale amiRNA-based screen identifies redundant roles of Arabidopsis ABCB6 and ABCB20 in auxin transport. Nat Commun 9:4204
Tõldsepp, Kadri; Zhang, Jingbo; Takahashi, Yohei et al. (2018) Mitogen-activated protein kinases MPK4 and MPK12 are key components mediating CO2 -induced stomatal movements. Plant J 96:1018-1035
Li, Zixing; Takahashi, Yohei; Scavo, Alexander et al. (2018) Abscisic acid-induced degradation of Arabidopsis guanine nucleotide exchange factor requires calcium-dependent protein kinases. Proc Natl Acad Sci U S A 115:E4522-E4531

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