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Chemoproteomics-Enabled Discovery of a Potent and Selective Inhibitor of the DNA Repair Protein MGMT.

Abstract
We present a novel chemical scaffold for cysteine-reactive covalent inhibitors. Chloromethyl triazoles (CMTs) are readily accessed in only two chemical steps, thus enabling the rapid optimization of the pharmacological properties of these inhibitors. We demonstrate the tunability of the CMTs towards a specific biological target by synthesizing AA-CW236 as the first potent non-pseudosubstrate inhibitor of the O(6) -alkylguanine DNA methyltransferase (MGMT), a protein of major clinical significance for the treatment of several severe cancer forms. Using quantitative proteomics profiling techniques, we show that AA-CW236 exhibits a high degree of selectivity towards MGMT. Finally, we validate the effectiveness of our MGMT inhibitor in combination with the DNA alkylating drug temozolomide in breast and colon cancer cells by fluorescence imaging and a cell-viability assay. Our results may open a new avenue towards the development of a clinically approved MGMT inhibitor.
AuthorsChao Wang, Daniel Abegg, Dominic G Hoch, Alexander Adibekian
JournalAngewandte Chemie (International ed. in English) (Angew Chem Int Ed Engl) Vol. 55 Issue 8 Pg. 2911-5 (Feb 18 2016) ISSN: 1521-3773 [Electronic] Germany
PMID26798972 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Copyright© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
Chemical References
  • Enzyme Inhibitors
  • O(6)-Methylguanine-DNA Methyltransferase
Topics
  • DNA Repair
  • Drug Discovery
  • Enzyme Inhibitors (chemistry, pharmacology)
  • O(6)-Methylguanine-DNA Methyltransferase (antagonists & inhibitors)
  • Proteomics

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