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    Date Issued2014 (1)AuthorBolon, Daniel N. (1)Green, Michael R. (1)Ma, Leyuan (1)Park, Sung Mi (1)Roscoe, Benjamin P. (1)View MoreUMass Chan AffiliationDepartment of Biochemistry and Molecular Pharmacology (1)Programs in Gene Function and Expression and Molecular Medicine (1)Document TypeJournal Article (1)KeywordBRAFV600E (1)Cancer Biology (1)Cell Biology (1)Deep sequencing (1)Drug resistance (1)View MoreJournalPigment Cell and Melanoma Research (1)

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    Resistance to vemurafenib resulting from a novel mutation in the BRAFV600E kinase domain

    Wagenaar, Timothy R.; Ma, Leyuan; Roscoe, Benjamin P.; Park, Sung Mi; Bolon, Daniel N.; Green, Michael R. (2014-01-01)
    Resistance to the BRAF inhibitor vemurafenib poses a significant problem for the treatment of BRAFV600E-positive melanomas. It is therefore critical to prospectively identify all vemurafenib resistance mechanisms prior to their emergence in the clinic. The vemurafenib resistance mechanisms described to date do not result from secondary mutations within BRAFV600E. To search for possible mutations within BRAFV600E that can confer drug resistance, we developed a systematic experimental approach involving targeted saturation mutagenesis, selection of drug-resistant variants, and deep sequencing. We identified a single nucleotide substitution (T1514A, encoding L505H) that greatly increased drug resistance in cultured cells and mouse xenografts. The kinase activity of BRAFV600E/L505H was higher than that of BRAFV600E, resulting in cross-resistance to a MEK inhibitor. However, BRAFV600E/L505H was less resistant to several other BRAF inhibitors whose binding sites were further from L505 than that of PLX4720. Our results identify a novel vemurafenib-resistant mutant and provide insights into the treatment for melanomas bearing this mutation.
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