Cooperative Cobinding of Synthetic and Natural Ligands to the Nuclear Receptor PPARγ

Author:

Shang Jinsai,Brust Richard,Mosure Sarah A.,Bass Jared,Munoz-Tello Paola,Lin Hua,Hughes Travis S.ORCID,Tang Miru,Ge Qingfeng,Kamenecka Theodore M.,Kojetin Douglas J.ORCID

Abstract

Crystal structures of peroxisome proliferator-activated receptor gamma (PPARγ) have revealed overlapping binding modes for synthetic and natural/endogenous ligands, indicating competition for the orthosteric pocket. Here we show that cobinding of a synthetic ligand to the orthosteric pocket can push natural and endogenous PPARγ ligands (fatty acids) out of the orthosteric pocket towards an alternate ligand-binding site near the functionally important omega (Ω) loop. X-ray crystallography, NMR spectroscopy, all-atom molecular dynamics simulations, and mutagenesis coupled to quantitative functional assays reveal that synthetic ligand and fatty acid cobinding can form a “ligand link” to the Ω loop and synergistically affect the structure and function of PPARγ. These findings contribute to a growing body of evidence indicating ligand binding to nuclear receptors can be more complex than the classical one-for-one orthosteric exchange of a natural or endogenous ligand with a synthetic ligand.

Publisher

Cold Spring Harbor Laboratory

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