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RAF inhibitor resistance is mediated by dimerization of aberrantly spliced BRAF(V600E).

Authors :
Poulikakos, Poulikos I.
Persaud, Yogindra
Janakiraman, Manickam
Kong, Xiangju
Ng, Charles
Moriceau, Gatien
Shi, Hubing
Atefi, Mohammad
Titz, Bjoern
Gabay, May Tal
Salton, Maayan
Dahlman, Kimberly B.
Tadi, Madhavi
Wargo, Jennifer A.
Flaherty, Keith T.
Kelley, Mark C.
Misteli, Tom
Chapman, Paul B.
Sosman, Jeffrey A.
Graeber, Thomas G.
Source :
Nature. 12/15/2011, Vol. 480 Issue 7377, p387-390. 4p. 2 Diagrams, 1 Graph.
Publication Year :
2011

Abstract

Activated RAS promotes dimerization of members of the RAF kinase family. ATP-competitive RAF inhibitors activate ERK signalling by transactivating RAF dimers. In melanomas with mutant BRAF(V600E), levels of RAS activation are low and these drugs bind to BRAF(V600E) monomers and inhibit their activity. This tumour-specific inhibition of ERK signalling results in a broad therapeutic index and RAF inhibitors have remarkable clinical activity in patients with melanomas that harbour mutant BRAF(V600E). However, resistance invariably develops. Here, we identify a new resistance mechanism. We find that a subset of cells resistant to vemurafenib (PLX4032, RG7204) express a 61-kDa variant form of BRAF(V600E), p61BRAF(V600E), which lacks exons 4-8, a region that encompasses the RAS-binding domain. p61BRAF(V600E) shows enhanced dimerization in cells with low levels of RAS activation, as compared to full-length BRAF(V600E). In cells in which p61BRAF(V600E) is expressed endogenously or ectopically, ERK signalling is resistant to the RAF inhibitor. Moreover, a mutation that abolishes the dimerization of p61BRAF(V600E) restores its sensitivity to vemurafenib. Finally, we identified BRAF(V600E) splicing variants lacking the RAS-binding domain in the tumours of six of nineteen patients with acquired resistance to vemurafenib. These data support the model that inhibition of ERK signalling by RAF inhibitors is dependent on levels of RAS-GTP too low to support RAF dimerization and identify a novel mechanism of acquired resistance in patients: expression of splicing isoforms of BRAF(V600E) that dimerize in a RAS-independent manner. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00280836
Volume :
480
Issue :
7377
Database :
Academic Search Index
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
69665837
Full Text :
https://doi.org/10.1038/nature10662