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Published on: December 19, 2018
CINPA1 binds directly to constitutive androstane receptor and inhibits its activity
Milu T Cherian1, Sergio C Chai1, William C Wright2
1Department of Chemical Biology & Therapeutics, St. Jude Children's Research Hospital, 262 Danny Thomas Place, Memphis, TN 38105, USA.
Abstract:
The constitutive androstane receptor (CAR) and pregnane X receptor (PXR) are xenobiotic sensors that regulate the expression of drug-metabolizing enzymes and efflux transporters. CAR activation promotes drug elimination, thereby reducing therapeutic effectiveness, or causes adverse drug effects via toxic metabolites. CAR inhibitors could be used to attenuate these adverse drug effects. CAR and PXR share ligands and target genes, confounding the understanding of the regulation of receptor-specific activity. We previously identified a small-molecule inhibitor, CINPA1, that inhibits CAR (without activating PXR at lower concentrations) by altering CAR-coregulator interactions and reducing CAR recruitment to DNA response elements of regulated genes. However, solid evidence was not presented for the direct binding of CINPA1 to CAR. In this study, we demonstrate direct interaction of CINPA1 with the CAR ligand-binding domain (CAR-LBD) and identify key residues involved in such interactions through a combination of biophysical and computational methods. We found that CINPA1 resides in the ligand-binding pocket to stabilize the CAR-LBD in a more rigid, less fluid state. Molecular dynamics simulations, together with our previously reported docking model, enabled us to predict which CAR residues were critical for interactions with CINPA1. The importance of these residues for CINPA1 binding were then validated by directed mutations and testing the mutant CAR proteins in transcription reporter and coregulatory interaction assays. We demonstrated strong hydrogen bonding of CINPA1 with N165 and H203 and identified other residues involved in hydrophobic contacts with CINPA1. Overall, our data confirm that CINPA1 directly binds to CAR.
Insights
This study confirms that CINPA1 directly binds to the constitutive androstane receptor (CAR) ligand-binding domain. This interaction stabilizes CAR, offering potential for developing new CAR inhibitors to manage drug metabolism and toxicity.
Area of Science:
- Pharmacology
- Molecular Biology
- Biophysics
Background:
- Constitutive androstane receptor (CAR) and pregnane X receptor (PXR) are key sensors of xenobiotics, regulating drug metabolism and transporter expression.
- CAR activation influences drug efficacy and can cause adverse effects, highlighting the need for CAR inhibitors.
- Understanding CAR and PXR regulation is complex due to shared ligands and target genes.
Purpose of the Study:
- To provide solid evidence for the direct binding of the CAR inhibitor CINPA1 to CAR.
- To identify the specific CAR residues involved in the interaction with CINPA1.
- To elucidate the mechanism by which CINPA1 modulates CAR activity.
Main Methods:
- Biophysical techniques and computational methods were employed to study CINPA1-CAR interactions.
- Molecular dynamics simulations and docking models predicted critical CAR residues.
- Directed mutagenesis of CAR, followed by transcription reporter and coregulatory interaction assays, validated binding interactions.
Main Results:
- CINPA1 directly binds to the CAR ligand-binding domain (CAR-LBD).
- CINPA1 stabilizes the CAR-LBD, reducing its fluidity.
- Key interactions include hydrogen bonding with N165 and H203, and hydrophobic contacts with other residues.
Conclusions:
- CINPA1 directly interacts with CAR, confirming its role as a CAR inhibitor.
- The identified binding mechanism provides a basis for designing more specific CAR-targeting drugs.
- This research advances the understanding of xenobiotic receptor regulation and therapeutic intervention strategies.
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