Inhibitors of BRAF dimers using an allosteric site

Author:

Cotto-Rios Xiomaris M.ORCID,Agianian BogosORCID,Gitego Nadege,Zacharioudakis Emmanouil,Giricz OrsiORCID,Wu Yang,Zou Yiyu,Verma Amit,Poulikakos Poulikos I.,Gavathiotis EvripidisORCID

Abstract

AbstractBRAF kinase, a critical effector of the ERK signaling pathway, is hyperactivated in many cancers. Oncogenic BRAFV600E signals as an active monomer in the absence of active RAS, however, in many tumors BRAF dimers mediate ERK signaling. FDA-approved RAF inhibitors poorly inhibit BRAF dimers, which leads to tumor resistance. We found that Ponatinib, an FDA-approved drug, is an effective inhibitor of BRAF monomers and dimers. Ponatinib binds the BRAF dimer and stabilizes a distinct αC-helix conformation through interaction with a previously unrevealed allosteric site. Using these structural insights, we developed PHI1, a BRAF inhibitor that fully uncovers the allosteric site. PHI1 exhibits discrete cellular selectivity for BRAF dimers, with enhanced inhibition of the second protomer when the first protomer is occupied, comprising a novel class of dimer selective inhibitors. This work shows that Ponatinib and BRAF dimer selective inhibitors will be useful in treating BRAF-dependent tumors.

Funder

Melanoma Research Alliance

Irma T. Hirschl Trust

U.S. Department of Health & Human Services | NIH | National Cancer Institute

American Cancer Society

U.S. Department of Health & Human Services | NIH | National Institute on Aging

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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