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Ligand-Independent Activation of Aryl Hydrocarbon Receptor and Attenuation of Glutamine Levels by Natural Deep Eutectic Solvent
Authors:Amina Anaise Denis  Daniela Toledo  Queen Assala Hakim  Aline Andrea Quintana  Catalina Real Escobar  Samuel Abidemi Oluwole  Arthur Costa  Estefania Gil Garcia  Anaya Rose Hill  Prof. Dr. Christian Agatemor
Affiliation:1. Department of Chemistry, University of Miami, Miami, FL-33146 USA;2. Department of Biology, University of Miami, Miami, FL-33146 USA
Abstract:Natural deep eutectic solvents (NADESs) are emerging sustainable alternatives to conventional organic solvents. Beyond their role as laboratory solvents, NADESs are increasingly explored in drug delivery and as therapeutics. Their increasing applications notwithstanding, our understanding of how they interact with biomolecules at multiple levels - metabolome, proteome, and transcriptome - within human cell remain poor. Here, we deploy integrated metabolomics, proteomics, and transcriptomics to probe how NADESs perturb the molecular landscape of human cells. In a human cell line model, we found that an archetypal NADES derived from choline and geranic acid (CAGE) significantly altered the metabolome, proteome, and transcriptome. CAGE upregulated indole-3-lactic acid and 4-hydroxyphenyllactic acid levels, resulting in ligand-independent activation of aryl hydrocarbon receptor to signal the transcription of genes with implications for inflammation, immunomodulation, cell development, and chemical detoxification. Further, treating the cell line with CAGE downregulated glutamine biosynthesis, a nutrient rapidly proliferating cancer cells require. CAGE's ability to attenuate glutamine levels is potentially relevant for cancer treatment. These findings suggest that NADESs, even when derived from natural components like choline, can indirectly modulate cell biology at multiple levels, expanding their applications beyond chemistry to biomedicine and biotechnology.
Keywords:aryl hydrocarbon receptor  choline and geranic acid  glutamine  multiomics  natural deep eutectic solvents
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