Structural Basis for Hydroxycholesterols as Natural Ligands of Orphan Nuclear Receptor RORγ
Author(s) -
Lihua Jin,
Dariusz Martynowski,
Songyang Zheng,
Taira Wada,
Wen Xie,
Yong Li
Publication year - 2010
Publication title -
molecular endocrinology
Language(s) - English
Resource type - Journals
eISSN - 1944-9917
pISSN - 0888-8809
DOI - 10.1210/me.2009-0507
Subject(s) - orphan receptor , biology , nuclear receptor , retinoic acid , retinoic acid receptor , receptor , neuron derived orphan receptor 1 , retinoic acid receptor gamma , microbiology and biotechnology , endogeny , retinoic acid inducible orphan g protein coupled receptor , retinoid x receptor , biochemistry , transcription factor , genetics , gene
The retinoic acid-related orphan receptor gamma (RORgamma) has important roles in development and metabolic homeostasis. Although the biological functions of RORgamma have been studied extensively, no ligands for RORgamma have been identified, and no structure of RORgamma has been reported. In this study, we showed that hydroxycholesterols promote the recruitment of coactivators by RORgamma using biochemical assays. We also report the crystal structures of the RORgamma ligand-binding domain bound with hydroxycholesterols. The structures reveal the binding modes of various hydroxycholesterols in the RORgamma pocket, with the receptors all adopting the canonical active conformation. Mutations that disrupt the binding of hydroxycholesterols abolish the constitutive activity of RORgamma. Our observations suggest an important role for the endogenous hydroxycholesterols in modulating RORgamma-dependent biological processes.
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