| Literature DB >> 32683181 |
Mohamed Shahien1, Mohamed Elagawany2, Sadichha Sitaula3, Shaimaa S Goher1, Sheryl L Burris3, Ryan Sanders3, Amer Avdagic3, Cyrielle Billon4, Lamees Hegazy4, Thomas P Burris4, Bahaa Elgendy5.
Abstract
Estrogen Related Receptors (ERRs) are key regulators of energy homeostasis and play important role in the etiology of metabolic disorders, skeletal muscle related disorders, and neurodegenerative diseases. Among the three ERR isoforms, ERRα emerged as a potential drug target for metabolic and neurodegenerative diseases. Although ERRβ/γ selective agonist chemical tools have been identified, there are no chemical tools that effectively target ERRα agonism. We successfully engineered high affinity ERRα agonism into a chemical scaffold that displays selective ERRβ/γ agonist activity (GSK4716), providing novel ERRα/β/γ pan agonists that can be used as tools to probe the physiological roles of these nuclear receptors. We identified the structural requirements to enhance selectivity toward ERRα. Molecular modeling shows that our novel modulators have favorable binding modes in the LBP of ERRα and can induce conformational changes where Phe328 that originally occupies the pocket is dislocated to accommodate the ligands in a rather small cavity. The best agonists up-regulated the expression of target genes PGC-1α and PGC-1β, which are necessary to achieve maximal mitochondrial biogenesis. Moreover, they increased the mRNA levels of PDK4, which play an important role in energy homeostasis.Entities:
Keywords: Estrogen-Related Receptors; Molecular Modeling; N-Acyl Hydrazones; Pan Agonists
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Year: 2020 PMID: 32683181 PMCID: PMC9137328 DOI: 10.1016/j.bioorg.2020.104079
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.307