A Selective ERRα/γ Inverse Agonist, SLU-PP-1072, Inhibits the Warburg Effect and Induces Apoptosis in Prostate Cancer Cells.
Emmalie SchoepkeCyrielle BillonKeith M HaynesAmer AvdagicSadichha SitaulaRyan SandersChristiana M AdeyemiJohn K WalkerThomas P BurrisPublished in: ACS chemical biology (2020)
The estrogen related receptors (ERRs) are a subgroup of nuclear receptors that play a role in regulation of cellular metabolism. Prostate cancer (PCa) cells display altered metabolic signatures, such as the Warburg effect, and the ERRs have been implicated in driving this phenotype. Despite the lack of a known endogenous ligand, synthetic ligands that target the ERRs have been discovered. For example, the ERRα inverse agonist XCT790 modulates metabolic pathways in PCa cells, but it also functions as a mitochondrial uncoupler independent of targeting ERRα. Here, we describe a novel dual ERRα/γ inverse agonist, SLU-PP-1072, derived from the GSK4716 ERRγ agonist scaffold that is distinct from the XCT790 scaffold. SLU-PP-1072 alters PCa cell metabolism and gene expression, resulting in cell cycle dysregulation and increased apoptosis without acute mitochondrial uncoupling activity. Our data suggest that inhibition of ERRα/γ may be beneficial in treatment of PCa, and SLU-PP-1072 provides a unique chemical tool to evaluate the pharmacology of ERRα and ERRγ.
Keyphrases
- cell cycle arrest
- cell cycle
- prostate cancer
- induced apoptosis
- gene expression
- oxidative stress
- cell death
- cell proliferation
- signaling pathway
- endoplasmic reticulum stress
- pi k akt
- liver failure
- genome wide
- stem cells
- dna methylation
- electronic health record
- intensive care unit
- radical prostatectomy
- machine learning
- nitric oxide
- cancer therapy
- randomized controlled trial
- acute respiratory distress syndrome
- deep learning
- respiratory failure
- nitric oxide synthase
- extracorporeal membrane oxygenation
- estrogen receptor
- double blind