Abstract

Pregnane X receptor (PXR) plays an important role in xenobiotic metabolism. While ligand binding induces PXR-dependent gene transcription, PXR shows constitutive transcriptional activity in the absence of ligands when expressed in cultured cells. This constitutive activity sometimes hampers investigation of PXR activation by compounds of interest. In this study, we investigated the molecular mechanism of PXR activation. In the reported crystal structures of unliganded PXR, helix 12 (H12), including a coactivator binding motif, was stabilized, while it is destabilized in the unliganded structures of other nuclear receptors, suggesting a role for H12 stabilization in the basal activity of PXR. Since Phe420, located in the loop between H11 and H12, is thought to interact with Leu411 and Ile414 to stabilize H12, we substituted alanine at Phe420 (PXR-F420A) and separately inserted three alanine residues directly after Phe420 (PXR-3A) and investigated their influence on PXR-mediated transcription. Reporter gene assays demonstrated that the mutants showed drastically reduced basal activity and enhanced responses to various ligands, which was further enhanced by coexpression of the coactivator peroxisome proliferator-activated receptor gamma coactivator 1α. Mutations of both Leu411 and Ile414 to alanine also suppressed basal activity. Mammalian two-hybrid assays showed that PXR-F420A and PXR-3A bound to corepressors and coactivators in the absence and presence of ligands, respectively. We conclude that the intramolecular interactions of Phe420 with Leu411 and Ile414 stabilize H12 to recruit coactivators even in the absence of ligands, contributing to the basal transcriptional activity of PXR. We propose that the generated mutants might be useful for PXR ligand screening.

Highlights

  • 1 (SRC1, known as NCOA1) or peroxisome proliferatoractivated receptor gamma coactivator 1α (PGC1α), and induce the transcription of their target genes [4, 5]

  • To investigate the influence of the Phe420-related mutations on the ligand-dependent recruitment of coactivators and corepressors on activation function 2 (AF2), mammalian two-hybrid assays were conducted with the nuclear receptor interacting motif (LXXLL) of PGC1α fused to the GAL4 DNA-binding domain (DBD) and Pregnane X receptor (PXR) fused to the VP16 transactivation domain (Fig. 3A)

  • The reported crystal structures of ligand-bound nuclear receptor ligand-binding domain (LBD), such as for RXRα, suggest that the AF2 domains are stabilized at the position where they interact with coactivator peptides [6, 7]

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Summary

RESEARCH ARTICLE

Ryota Shizu*, Hikaru Nishiguchi, Sarii Tashiro, Takumi Sato, Ayaka Sugawara, Yuichiro Kanno, Takuomi Hosaka, Takamitsu Sasaki, and Kouichi Yoshinari* From the Laboratory of Molecular Toxicology, School of Pharmaceutical Sciences, University of Shizuoka, Shizuoka, Japan

Edited by Ronald Wek
Results
Discussion
Experimental procedures
Plasmid preparation
Cell cultures
Reporter gene assays
Full Text
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