Article ID Journal Published Year Pages File Type
2041440 Cell Reports 2015 11 Pages PDF
Abstract

•A point-mutated VDR (VDRgem) is selectively activated by gemini ligands•Skeletal defects are more severe in VDRgem mice than in VDR null mice•VDRgem represses VDR target genes•Transcriptional activity of VDRgem is restored in mice by gemini ligands

SummaryThe bioactive form of vitamin D [1,25(OH)2D3] regulates mineral and bone homeostasis and exerts potent anti-inflammatory and antiproliferative properties through binding to the vitamin D receptor (VDR). The 3D structures of the VDR ligand-binding domain with 1,25(OH)2D3 or gemini analogs unveiled the molecular mechanism underlying ligand recognition. On the basis of structure-function correlations, we generated a point-mutated VDR (VDRgem) that is unresponsive to 1,25(OH)2D3, but the activity of which is efficiently induced by the gemini ligands. Moreover, we show that many VDR target genes are repressed by unliganded VDRgem and that mineral ion and bone homeostasis are more impaired in VDRgem mice than in VDR null mice, demonstrating that mutations abolishing VDR ligand binding result in more severe skeletal defects than VDR null mutations. As gemini ligands induce VDRgem transcriptional activity in mice and normalize their serum calcium levels, VDRgem is a powerful tool to further unravel both liganded and unliganded VDR signaling.

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Life Sciences Agricultural and Biological Sciences Agricultural and Biological Sciences (General)
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