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Updated: May 30, 2026

High-throughput Analysis of Mammalian Olfactory Receptors: Measurement of Receptor Activation via Luciferase Activity
Published on: June 2, 2014
Multi-species analyses of direct activators of the constitutive androstane receptor
Curtis J Omiecinski1, Denise M Coslo, Tao Chen
1Center for Molecular Toxicology and Carcinogenesis, Department of Veterinary and Biomedical Sciences, Penn State University, University Park, Pennsylvania 16802, USA. cjo10@psu.edu
Abstract:
The constitutive androstane receptor (CAR; NR1I3) is a member of the nuclear receptor superfamily and functions as an important xenochemical sensor and transcriptional modulator in mammalian cells. Upon chemical activation, CAR undergoes nuclear translocation and heterodimerization with the retinoid X receptor subsequent to its DNA target interaction. CAR is unusual among nuclear receptors in that it possesses a high level of constitutive activity in cell-based assays, obscuring the detection of ligand activators. However, a human splice variant of CAR, termed CAR3, exhibits negligible constitutive activity. In addition, CAR3 is activated by ligands with similar specificity as the reference form of the receptor. In this study, we hypothesized that similar CAR3 receptors could be constructed across various mammalian species' forms of CAR that would preserve species-specific ligand responses, thus enabling a more sensitive and differential screening assessment of CAR response among animal models. A battery of CAR3 receptors was produced in mouse, rat, and dog and comparatively evaluated with selected ligands together with human CAR1 and CAR3 in mammalian cell reporter assays. The results demonstrate that the 5-amino acid insertion that typifies human CAR3 also imparts ligand-activated receptor function in other species' CAR while maintaining signature responses in each species to select CAR ligands. These variant constructs permit in vitro evaluation of differential chemical effector responses across species and coupled with in vivo assays, the species-selective contributions of CAR in normal physiology and in disease processes such as hepatocarcinogenesis.
Insights
Scientists engineered a CAR3 variant of the constitutive androstane receptor (CAR) to improve ligand detection across species. This CAR3 variant enables sensitive, differential screening of CAR responses in various animal models for drug development and toxicological studies.
Area of Science:
- Pharmacology and Toxicology
- Molecular Biology
- Nuclear Receptor Research
Background:
- The constitutive androstane receptor (CAR) is a crucial xenochemical sensor and transcriptional regulator in mammals.
- CAR exhibits high constitutive activity, complicating the identification of its activators.
- A human splice variant, CAR3, shows reduced constitutive activity and retains ligand-specific activation.
Purpose of the Study:
- To develop CAR3 variants in other mammalian species to enable sensitive, species-specific ligand screening.
- To assess the utility of these variants for differential assessment of CAR responses across animal models.
Main Methods:
- CAR3 variants were generated for mouse, rat, and dog.
- These variants were evaluated alongside human CAR1 and CAR3 in mammalian cell reporter assays using selected ligands.
- Ligand-activated function and species-specific responses were comparatively analyzed.
Main Results:
- A 5-amino acid insertion, characteristic of human CAR3, conferred ligand-activated function to CAR3 variants in mouse, rat, and dog.
- These species-specific CAR3 variants maintained distinct responses to known CAR ligands.
- The variant constructs allowed for in vitro evaluation of differential chemical effector responses across species.
Conclusions:
- CAR3 variants can be successfully constructed across mammalian species, preserving species-specific ligand responses.
- These engineered receptors facilitate sensitive, differential screening of CAR activators and inhibitors.
- The CAR3 variants are valuable tools for studying species-selective CAR functions in physiology and disease, aiding in cross-species toxicological assessments.
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