The mitotic kinesin Eg5 overcomes inhibition to the phase I/II clinical candidate SB743921 by an allosteric resistance mechanism
Talapatra, Sandeep K. and Anthony, Nahoum Guillaume Hsuan and MacKay, Simon and Kozielski, Frank (2013) The mitotic kinesin Eg5 overcomes inhibition to the phase I/II clinical candidate SB743921 by an allosteric resistance mechanism. Journal of Medicinal Chemistry, 56 (16). pp. 6317-6329. ISSN 0022-2623 (https://doi.org/10.1021/jm4006274)
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Development of drug resistance during cancer chemotherapy is one of the major causes of chemotherapeutic failure for the majority of clinical agents. The aim of this study was to investigate the underlying molecular mechanism of resistance developed by the mitotic kinesin Eg5 against the potent second-generation ispinesib analogue SB743921 (1), a phase I/II clinical candidate. Biochemical and biophysical data demonstrate that point mutations in the inhibitor-binding pocket decrease the efficacy of 1 by several 1000-fold. Surprisingly, the structures of wild type and mutant Eg5 in complex with 1 display no apparent structural changes in the binding configuration of the drug candidate. Furthermore, ITC and modelling approaches reveal that resistance to 1 is not through conventional steric effects at the binding site, but through reduced flexibility and changes in energy fluctuation pathways through the protein that influence its function. This is a phenomenon we have called 'resistance by allostery'.
ORCID iDs
Talapatra, Sandeep K., Anthony, Nahoum Guillaume Hsuan ORCID: https://orcid.org/0000-0002-2026-8763, MacKay, Simon ORCID: https://orcid.org/0000-0001-8000-6557 and Kozielski, Frank;-
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Item type: Article ID code: 44531 Dates: DateEvent22 August 2013Published22 July 2013Published OnlineSubjects: Medicine > Pharmacy and materia medica Department: Faculty of Science > Strathclyde Institute of Pharmacy and Biomedical Sciences Depositing user: Pure Administrator Date deposited: 26 Aug 2013 10:25 Last modified: 11 Nov 2024 10:27 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/44531