BRAF V600E mutation in hairy cell leukemia: from bench to bedside
pmid: 27554081
BRAF V600E mutation in hairy cell leukemia: from bench to bedside
AbstractHairy cell leukemia (HCL) is a distinct clinicopathological entity whose underlying genetic lesion has remained a mystery for over half a century. The BRAF V600E mutation is now recognized as the causal genetic event of HCL because it is somatic, present in the entire tumor clone, detectable in almost all cases at diagnosis (encompassing the whole disease spectrum), and stable at relapse. BRAF V600E leads to the constitutive activation of the RAF-MEK-extracellular signal-regulated kinase (ERK) signaling pathway which represents the key event in the molecular pathogenesis of HCL. KLF2 and CDNK1B (p27) mutations may cooperate with BRAF V600E in promoting leukemic transformation. Sensitive molecular assays for detecting BRAF V600E allow HCL (highly responsive to purine analogs) to be better distinguished from HCL-like disorders, which are treated differently. In vitro preclinical studies on purified HCL cells proved that BRAF and MEK inhibitors can induce marked dephosphorylation of MEK/ERK, silencing of RAF-MEK-ERK pathway transcriptional output, loss of the HCL-specific gene expression profile signature, change of morphology from “hairy” to “smooth,” and eventually apoptosis. The overall response rate of refractory/relapsed HCL patients to the BRAF inhibitor vemurafenib approached 100%, with 35% to 40% complete remissions (CRs). The median relapse free-survival was about 19 months in patients who had achieved CR and 6 months in those who had obtained a partial response. Future therapeutic perspectives include: (1) combining BRAF inhibitors with MEK inhibitors or immunotherapy (anti-CD20 monoclonal antibody) to increase the percentage of CRs and (2) better understanding of the molecular mechanisms underlying resistance of HCL cells to BRAF inhibitors.
- University of Perugia Italy
Proto-Oncogene Proteins B-raf, Leukemia, Hairy Cell, MAP Kinase Signaling System, Kruppel-Like Transcription Factors, Mutation, Missense, Disease-Free Survival, Enzyme Activation, Survival Rate, Amino Acid Substitution, Animals, Humans
Proto-Oncogene Proteins B-raf, Leukemia, Hairy Cell, MAP Kinase Signaling System, Kruppel-Like Transcription Factors, Mutation, Missense, Disease-Free Survival, Enzyme Activation, Survival Rate, Amino Acid Substitution, Animals, Humans
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