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Kaufman, Charles

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Kaufman

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Charles

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Kaufman, Charles

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Now showing 1 - 3 of 3
  • Publication

    Ubiquitous transgene expression and Cre-based recombination driven by the ubiquitin promoter in zebrafish

    (The Company of Biologists, 2010) Mosimann, Christian; Kaufman, Charles; Li, Pulin; Pugach, Emily K.; Tamplin, Owen J.; Zon, Leonard

    Molecular genetics approaches in zebrafish research are hampered by the lack of a ubiquitous transgene driver element that is active at all developmental stages. Here, we report the isolation and characterization of the zebrafish ubiquitin (ubi) promoter, which drives constitutive transgene expression during all developmental stages and analyzed adult organs. Notably, ubi expresses in all blood cell lineages, and we demonstrate the application of ubi-driven fluorophore transgenics in hematopoietic transplantation experiments to assess true multilineage potential of engrafted cells. We further generated transgenic zebrafish that express ubiquitous 4-hydroxytamoxifen-controlled Cre recombinase activity from a (ubi:cre^{ERt2}) transgene, as well as ubi:loxP-EGFP-loxP-mCherry (ubi:Switch) transgenics and show their use as a constitutive fluorescent lineage tracing reagent. The ubi promoter and the transgenic lines presented here thus provide a broad resource and important advancement for transgenic applications in zebrafish.

  • Publication

    DHODH modulates transcriptional elongation in the neural crest and melanoma

    (Nature Publishing Group, 2011) White, Richard Mark; Cech, Jennifer; Ratanasirintrawoot, Sutheera; Lin, Charles; Rahl, Peter B.; Burke, Christopher J.; Langdon, Erin; Tomlinson, Matthew L.; Mosher, Jack; Kaufman, Charles; Chen, Frank; Long, Hannah K.; Kramer, Martin; Datta, Sumon; Neuberg, Donna; Granter, Scott; Young, Richard; Morrison, Sean; Wheeler, Grant N.; Zon, Leonard
  • Publication

    The genetic heterogeneity and mutational burden of engineered melanomas in zebrafish models

    (BioMed Central, 2013) Yen, Jennifer; White, Richard M; Wedge, David C; Van Loo, Peter; de Ridder, Jeroen; Capper, Amy; Richardson, Jennifer; Jones, David; Raine, Keiran; Watson, Ian R; Wu, Chang-Jiun; Cheng, Jiqiu; Martincorena, Iñigo; Nik-Zainal, Serena; Mudie, Laura; Moreau, Yves; Marshall, John; Ramakrishna, Manasa; Tarpey, Patrick; Shlien, Adam; Whitmore, Ian; Gamble, Steve; Latimer, Calli; Langdon, Erin; Kaufman, Charles; Dovey, Mike; Taylor, Alison; Menzies, Andy; McLaren, Stuart; O’Meara, Sarah; Butler, Adam; Teague, Jon; Lister, James; Chin, Lynda; Campbell, Peter; Adams, David J; Zon, Leonard; Patton, E Elizabeth; Stemple, Derek L; Futreal, P Andy

    Background: Melanoma is the most deadly form of skin cancer. Expression of oncogenic BRAF or NRAS, which are frequently mutated in human melanomas, promote the formation of nevi but are not sufficient for tumorigenesis. Even with germline mutated p53, these engineered melanomas present with variable onset and pathology, implicating additional somatic mutations in a multi-hit tumorigenic process. Results: To decipher the genetics of these melanomas, we sequence the protein coding exons of 53 primary melanomas generated from several BRAFV600E or NRASQ61K driven transgenic zebrafish lines. We find that engineered zebrafish melanomas show an overall low mutation burden, which has a strong, inverse association with the number of initiating germline drivers. Although tumors reveal distinct mutation spectrums, they show mostly C > T transitions without UV light exposure, and enrichment of mutations in melanogenesis, p53 and MAPK signaling. Importantly, a recurrent amplification occurring with pre-configured drivers BRAFV600E and p53-/- suggests a novel path of BRAF cooperativity through the protein kinase A pathway. Conclusion: This is the first analysis of a melanoma mutational landscape in the absence of UV light, where tumors manifest with remarkably low mutation burden and high heterogeneity. Genotype specific amplification of protein kinase A in cooperation with BRAF and p53 mutation suggests the involvement of melanogenesis in these tumors. This work is important for defining the spectrum of events in BRAF or NRAS driven melanoma in the absence of UV light, and for informed exploitation of models such as transgenic zebrafish to better understand mechanisms leading to human melanoma formation.