Targeted AURKA degradation: Towards new therapeutic agents for neuroblastoma
Publication date
2023-02-05
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taverne
Abstract
Aurora kinase A (AURKA) is a well-established target in neuroblastoma (NB) due to both its catalytic functions during mitosis and its kinase-independent functions, including stabilization of the key oncoprotein MYCN. We present a structure-activity relationship (SAR) study of MK-5108-derived PROTACs against AURKA by exploring different linker lengths and exit vectors on the thalidomide moiety. PROTAC SK2188 induces the most potent AURKA degradation (DC50,24h 3.9 nM, Dmax,24h 89%) and shows an excellent binding and degradation selectivity profile. Treatment of NGP neuroblastoma cells with SK2188 induced concomitant MYCN degradation, high replication stress/DNA damage levels and apoptosis. Moreover, SK2188 significantly outperforms the parent inhibitor MK-5108 in a cell proliferation screen and patient-derived organoids. Furthermore, altering the attachment point of the PEG linker to the 5-position of thalidomide allowed us to identify a potent AURKA degrader with a linker as short as 2 PEG units. With this, our SAR-study provides interesting lead structures for further optimization and validation of AURKA degradation as a potential therapeutic strategy in neuroblastoma.
Keywords
AURKA, MYCN, Neuroblastoma, PROTAC, Targeted protein degradation, Taverne, Pharmacology, Drug Discovery, Organic Chemistry
Citation
Rishfi, M, Krols, S, Martens, F, Bekaert, S L, Sanders, E, Eggermont, A, De Vloed, F, Goulding, J R, Risseeuw, M, Molenaar, J, De Wilde, B, Van Calenbergh, S & Durinck, K 2023, 'Targeted AURKA degradation : Towards new therapeutic agents for neuroblastoma', European Journal of Medicinal Chemistry, vol. 247, 115033. https://doi.org/10.1016/j.ejmech.2022.115033