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PMID: 21107323 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Melanomas acquire resistance to B-RAF(V600E) inhibition by RTK or N-RAS upregulation.

Nature ·Vol. 468 ·No. 7326 ·2010-12-16 ·Pages 973-7

Nazarian R, Shi H, Wang Q, Kong X, Koya RC, Lee H, Chen Z, Lee MK, Attar N, Sazegar H, Chodon T, Nelson SF, McArthur G, Sosman JA, Ribas A, Lo RS

Abstract

Activating B-RAF(V600E) (also known as BRAF) kinase mutations occur in ∼7% of human malignancies and ∼60% of melanomas. Early clinical experience with a novel class I RAF-selective inhibitor, PLX4032, demonstrated an unprecedented 80% anti-tumour response rate among patients with B-RAF(V600E)-positive melanomas, but acquired drug resistance frequently develops after initial responses. Hypotheses for mechanisms of acquired resistance to B-RAF inhibition include secondary mutations in B-RAF(V600E), MAPK reactivation, and activation of alternative survival pathways. Here we show that acquired resistance to PLX4032 develops by mutually exclusive PDGFRβ (also known as PDGFRB) upregulation or N-RAS (also known as NRAS) mutations but not through secondary mutations in B-RAF(V600E). We used PLX4032-resistant sub-lines artificially derived from B-RAF(V600E)-positive melanoma cell lines and validated key findings in PLX4032-resistant tumours and tumour-matched, short-term cultures from clinical trial patients. Induction of PDGFRβ RNA, protein and tyrosine phosphorylation emerged as a dominant feature of acquired PLX4032 resistance in a subset of melanoma sub-lines, patient-derived biopsies and short-term cultures. PDGFRβ-upregulated tumour cells have low activated RAS levels and, when treated with PLX4032, do not reactivate the MAPK pathway significantly. In another subset, high levels of activated N-RAS resulting from mutations lead to significant MAPK pathway reactivation upon PLX4032 treatment. Knockdown of PDGFRβ or N-RAS reduced growth of the respective PLX4032-resistant subsets. Overexpression of PDGFRβ or N-RAS(Q61K) conferred PLX4032 resistance to PLX4032-sensitive parental cell lines. Importantly, MAPK reactivation predicts MEK inhibitor sensitivity. Thus, melanomas escape B-RAF(V600E) targeting not through secondary B-RAF(V600E) mutations but via receptor tyrosine kinase (RTK)-mediated activation of alternative survival pathway(s) or activated RAS-mediated reactivation of the MAPK pathway, suggesting additional therapeutic strategies.

MeSH Terms
Base Sequence Cell Line, Tumor Drug Resistance, Neoplasm/drug effects Enzyme Activation/drug effects Gene Expression Regulation, Neoplastic/drug effects Genes, ras/genetics Humans Indoles/pharmacology,therapeutic use MAP Kinase Signaling System/drug effects Melanoma/drug therapy,enzymology,genetics,pathology Mitogen-Activated Protein Kinase Kinases/antagonists & inhibitors Mutation/genetics Oligonucleotide Array Sequence Analysis Protein Kinase Inhibitors/pharmacology,therapeutic use Proto-Oncogene Proteins B-raf/antagonists & inhibitors,chemistry,genetics,metabolism Receptor Protein-Tyrosine Kinases/metabolism Receptor, Platelet-Derived Growth Factor beta/biosynthesis,genetics Sulfonamides/pharmacology,therapeutic use Up-Regulation/drug effects Vemurafenib
Chemicals
Indoles Protein Kinase Inhibitors Sulfonamides Vemurafenib Receptor Protein-Tyrosine Kinases Receptor, Platelet-Derived Growth Factor beta BRAF protein, human Proto-Oncogene Proteins B-raf Mitogen-Activated Protein Kinase Kinases
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Nazarian Ramin
Division of Dermatology/Department of Medicine, UCLA's Jonsson Comprehensive Cancer Center, 52-121 CHS, Los Angeles, California 90095-1750, USA.
Shi Hubing
Wang Qi
Kong Xiangju
Koya Richard C
Lee Hane
Chen Zugen
Lee Mi-Kyung
Attar Narsis
Sazegar Hooman
Chodon Thinle
Nelson Stanley F
McArthur Grant
Sosman Jeffrey A
Ribas Antoni
Lo Roger S
References (18)
18 references, click to expand
  1. Elevated CRAF as a potential mechanism of acquired resistance to BRAF inhibition in melanoma.
    Cancer Res. 2008 Jun 15;68(12):4853-61 PMID: 18559533
  2. Identification of direct transcriptional targets of (V600E)BRAF/MEK signalling in melanoma.
    Pigment Cell Melanoma Res. 2009 Dec;22(6):785-98 PMID: 19682280
  3. PLX4032, a selective BRAF(V600E) kinase inhibitor, activates the ERK pathway and enhances cell migration and proliferation of BRAF melanoma cells.
    Pigment Cell Melanoma Res. 2010 Apr;23(2):190-200 PMID: 20149136
  4. In melanoma, RAS mutations are accompanied by switching signaling from BRAF to CRAF and disrupted cyclic AMP signaling.
    Cancer Res. 2006 Oct 1;66(19):9483-91 PMID: 17018604
  5. Mutations of the BRAF gene in human cancer.
    Nature. 2002 Jun 27;417(6892):949-54 PMID: 12068308
  6. RAF inhibitors transactivate RAF dimers and ERK signalling in cells with wild-type BRAF.
    Nature. 2010 Mar 18;464(7287):427-30 PMID: 20179705
  7. Clinical efficacy of a RAF inhibitor needs broad target blockade in BRAF-mutant melanoma.
    Nature. 2010 Sep 30;467(7315):596-9 PMID: 20823850
  8. Activating K-Ras mutations outwith 'hotspot' codons in sporadic colorectal tumours - implications for personalised cancer medicine.
    Br J Cancer. 2010 Feb 16;102(4):693-703 PMID: 20147967
  9. Factors underlying sensitivity of cancers to small-molecule kinase inhibitors.
    Nat Rev Drug Discov. 2009 Sep;8(9):709-23 PMID: 19629074
  10. Comprehensive dissection of PDGF-PDGFR signaling pathways in PDGFR genetically defined cells.
    PLoS One. 2008;3(11):e3794 PMID: 19030102
  11. Inhibition of mutated, activated BRAF in metastatic melanoma.
    N Engl J Med. 2010 Aug 26;363(9):809-19 PMID: 20818844
  12. Gatekeeper mutations mediate resistance to BRAF-targeted therapies.
    Sci Transl Med. 2010 Jun 9;2(35):35ra41 PMID: 20538618
  13. Differential sensitivity of melanoma cell lines with BRAFV600E mutation to the specific Raf inhibitor PLX4032.
    J Transl Med. 2010 Apr 20;8:39 PMID: 20406486
  14. Kinase-dead BRAF and oncogenic RAS cooperate to drive tumor progression through CRAF.
    Cell. 2010 Jan 22;140(2):209-21 PMID: 20141835
  15. Discovery of a selective inhibitor of oncogenic B-Raf kinase with potent antimelanoma activity.
    Proc Natl Acad Sci U S A. 2008 Feb 26;105(8):3041-6 PMID: 18287029
  16. (V600E)BRAF is associated with disabled feedback inhibition of RAF-MEK signaling and elevated transcriptional output of the pathway.
    Proc Natl Acad Sci U S A. 2009 Mar 17;106(11):4519-24 PMID: 19251651
  17. MEK1 mutations confer resistance to MEK and B-RAF inhibition.
    Proc Natl Acad Sci U S A. 2009 Dec 1;106(48):20411-6 PMID: 19915144
  18. RAF inhibitors prime wild-type RAF to activate the MAPK pathway and enhance growth.
    Nature. 2010 Mar 18;464(7287):431-5 PMID: 20130576
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2010-12-16
Epub
2010-00-24
Pages
973-7
Language
English
Region
England
NLM ID
0410462
PMCID
PMC3143360
Subset
IM
Grants
NCI NIH HHS · K22 CA151638 · United States
NCI NIH HHS · K22 CA151638-01 · United States
NCI NIH HHS · K24 CA097588 · United States
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