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Destabilizers of the thymidylate synthase homodimer accelerate its proteasomal degradation and inhibit cancer growth
- Source :
- eLife, 11:e73862. eLife Sciences Publications Limited, Costantino, L, Ferrari, S, Santucci, M, Salo-Ahen, O M H, Carosati, E, Franchini, S, Lauriola, A, Pozzi, C, Trande, M, Gozzi, G, Saxena, P, Cannazza, G, Losi, L, Cardinale, D, Venturelli, A, Quotadamo, A, Linciano, P, Tagliazucchi, L, Moschella, M G, Guerrini, R, Pacifico, S, Luciani, R, Genovese, F, Henrich, S, Alboni, S, Santarem, N, da Silva Cordeiro, A, Giovannetti, E, Peters, G J, Pinton, P, Rimessi, A, Cruciani, G, Stroud, R M, Wade, R C, Mangani, S, Marverti, G, D'Arca, D, Ponterini, G & Costi, M P 2022, ' Destabilizers of the thymidylate synthase homodimer accelerate its proteasomal degradation and inhibit cancer growth ', eLife, vol. 11, e73862 . https://doi.org/10.7554/eLife.73862
- Publication Year :
- 2022
-
Abstract
- Drugs that target human thymidylate synthase (hTS), a dimeric enzyme, are widely used in anticancer therapy. However, treatment with classical substrate-site-directed TS inhibitors induces over-expression of this protein and development of drug resistance. We thus pursued an alternative strategy that led us to the discovery of TS-dimer destabilizers. These compounds bind at the monomer-monomer interface and shift the dimerization equilibrium of both the recombinant and the intracellular protein toward the inactive monomers. A structural, spectroscopic, and kinetic investigation has provided evidence and quantitative information on the effects of the interaction of these small molecules with hTS. Focusing on the best among them, E7, we have shown that it inhibits hTS in cancer cells and accelerates its proteasomal degradation, thus causing a decrease in the enzyme intracellular level. E7 also showed a superior anticancer profile to fluorouracil in a mouse model of human pancreatic and ovarian cancer. Thus, over sixty years after the discovery of the first TS prodrug inhibitor, fluorouracil, E7 breaks the link between TS inhibition and enhanced expression in response, providing a strategy to fight drug-resistant cancers.
- Subjects :
- proteasomal degradation
protein dimer destabilizers
biochemistry
cancer biology
chemical biology
human
thymidylate synthase
General Biochemistry, Genetics and Molecular Biology
Mice
Rare Diseases
Animals
Humans
Enzyme Inhibitors
enzyme dissociative inhibition mechanism
Cancer
Ovarian Neoplasms
Binding Sites
General Immunology and Microbiology
target engagement
General Neuroscience
General Medicine
cancer growth inhibition
Orphan Drug
5.1 Pharmaceuticals
Female
Fluorouracil
Biochemistry and Cell Biology
Development of treatments and therapeutic interventions
Biotechnology
Subjects
Details
- Language :
- English
- ISSN :
- 2050084X
- Database :
- OpenAIRE
- Journal :
- eLife, 11:e73862. eLife Sciences Publications Limited, Costantino, L, Ferrari, S, Santucci, M, Salo-Ahen, O M H, Carosati, E, Franchini, S, Lauriola, A, Pozzi, C, Trande, M, Gozzi, G, Saxena, P, Cannazza, G, Losi, L, Cardinale, D, Venturelli, A, Quotadamo, A, Linciano, P, Tagliazucchi, L, Moschella, M G, Guerrini, R, Pacifico, S, Luciani, R, Genovese, F, Henrich, S, Alboni, S, Santarem, N, da Silva Cordeiro, A, Giovannetti, E, Peters, G J, Pinton, P, Rimessi, A, Cruciani, G, Stroud, R M, Wade, R C, Mangani, S, Marverti, G, D'Arca, D, Ponterini, G & Costi, M P 2022, ' Destabilizers of the thymidylate synthase homodimer accelerate its proteasomal degradation and inhibit cancer growth ', eLife, vol. 11, e73862 . https://doi.org/10.7554/eLife.73862
- Accession number :
- edsair.doi.dedup.....a848d30763106e18c922a0bf6771f3a3