Activated RAS GTPase signalling is a critical driver of oncogenic transformation and malignant disease. Cellular models of RAS-dependent cancers have been used to identify experimental small molecules, such as SCH51344, but their molecular mechanism of action remains generally unknown. Here, using a chemical proteomic approach, we identify the target of SCH51344 as the human mutT homologue MTH1 (also known as NUDT1), a nucleotide pool sanitizing enzyme. Loss-of-function of MTH1 impaired growth of KRAS tumour cells, whereas MTH1 overexpression mitigated sensitivity towards SCH51344. Searching for more drug-like inhibitors, we identified the kinase inhibitor crizotinib as a nanomolar suppressor of MTH1 activity. Surprisingly, the clinically used (R)-enantiomer of the drug was inactive, whereas the (S)-enantiomer selectively inhibited MTH1 catalytic activity. Enzymatic assays, chemical proteomic profiling, kinome-wide activity surveys and MTH1 co-crystal structures of both enantiomers provide a rationale for this remarkable stereospecificity. Disruption of nucleotide pool homeostasis via MTH1 inhibition by (S)-crizotinib induced an increase in DNA single-strand breaks, activated DNA repair in human colon carcinoma cells, and effectively suppressed tumour growth in animal models. Our results propose (S)-crizotinib as an attractive chemical entity for further pre-clinical evaluation, and small-molecule inhibitors of MTH1 in general as a promising novel class of anticancer agents.
Stereospecific targeting of MTH1 by (S)-crizotinib as anticancer strategy
K. Huber,E. Salah,Branka Radic,Manuela Gridling,J. Elkins,Alexey Stukalov,A. Jemth,C. Gokturk,Kumar Sanjiv,K. Strömberg,T. Pham,U. W. Berglund,J. Colinge,K. Bennett,J. Loizou,T. Helleday,S. Knapp,G. Superti-Furga
Published 2014 in Nature
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- Publication year
2014
- Venue
Nature
- Publication date
2014-04-02
- Fields of study
Biology, Medicine, Chemistry
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Semantic Scholar, PubMed
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