Characterization and inhibitor sensitivity of ARAF, BRAF, and CRAF complexes
Tkacik, E.; Jang, D. m.; Boxer, K.; Ha, B. H.; Eck, M. J.
Show abstract
The RAS-RAF-MEK-ERK signaling pathway controls cellular growth and proliferation, and mutational activation of this pathway is a frequent cause of cancer. Most prominently, the V600E mutation in BRAF causes malignant melanoma, papillary thyroid cancer and other malignancies. Rare but recurrent activating mutations in the other two RAF isoforms, ARAF and CRAF, have also been identified in diverse cancers. Distinct classes of RAF inhibitors have been developed, particularly for BRAFV600E, but their potencies against the three RAF isoforms have not been systematically compared. Here we biochemically characterize monomeric and dimeric preparations of ARAF, BRAF, and CRAF and measure the potencies of a panel of thirteen type I, type I.5, and type II RAF inhibitors against each active RAF preparation. Type I inhibitor SB590885 is roughly equipotent across RAF isoforms and, as expected, type I.5 inhibitors are typically most potent against BRAFV600E. Despite their reputation as pan-RAF inhibitors, type II inhibitors as a class are potent inhibitors of CRAF but exhibit relative sparing of ARAF and intermediate potencies against BRAF. Type II compounds inhibit BRAF and CRAF with marked positive cooperativity, and their apparent potencies are insensitive to ATP-concentrations. Crystal structures of CRAF in complex with type I.5 inhibitor PLX4720 reveal an asymmetric CRAF dimer with one CRAF subunit bound in the inactive state and the second bound in an C-helix-in, active conformation with an altered inhibitor pose. Our findings have important implications for understanding the pharmacology of current RAF inhibitors and will inform development of new agents with distinct isoform selectivity.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Targeting the Protein-Protein Interaction Between the CDC37 Co-Chaperone and Client Kinases by an Allosteric RAF Dimer Breaker 96%
- An SH3-binding allosteric modulator stabilizes the global conformation of the AML-associated Src-family kinase, Hck 96%
- Development of an inhibitory TTC7B selective nanobody that blocks EFR3 recruitment of PI4KA 95%
Similar papers in this journal
- Conformation and dynamics of the kinase domain drive subcellular location and activation of LRRK2 96%
- Mutation in Abl kinase with altered drug binding kinetics indicates a novel mechanism of imatinib resistance 95%
- Crystal structure of a guanine nucleotide exchange factor encoded by the scrub typhus pathogen Orientia tsutsugamushi 95%
Similar papers in this journal
- A novel bivalent interaction mode underlies a non-catalytic mechanism for Pin1-mediated Protein Kinase C regulation 96%
- Recognition and Cleavage of Human tRNA Methyltransferase TRMT1 by the SARS-CoV-2 Main Protease 95%
- Disease related mutations in PI3Kγ disrupt regulatory C-terminal dynamics and reveals a path to selective inhibitors 95%
Similar papers in this journal
Similar papers in this journal
- Proteome-wide screening for mitogen-activated protein kinase docking motifs and interactors 95%
- RASSF effectors couple diverse RAS subfamily GTPases to the Hippo pathway 95%
- Functional anatomy of the full length CXCR4-CXCL12 complex systematically dissected by quantitative model-guided mutagenesis 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.