Targeted AURKA degradation: Towards new therapeutic agents for neuroblastoma

Publication date

2023-02-05

Authors

Rishfi, Muhammad
Krols, Simon
Martens, Fien
Bekaert, Sarah Lee
Sanders, Ellen
Eggermont, Aline
De Vloed, Fanny
Goulding, Joshua Robert
Risseeuw, Martijn
Molenaar, JanISNI 0000000389694856

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

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