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  • Author: Goding CR
  • References

Author: Goding CR


References 10 references


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  • Falletta P, et al. (2017) Translation reprogramming is an evolutionarily conserved driver of phenotypic plasticity and therapeutic resistance in melanoma. Genes Dev 31(1):18-33 PMID:28096186
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  • Martinez-Campa C, et al. (2004) Precise nucleosome positioning and the TATA box dictate requirements for the histone H4 tail and the bromodomain factor Bdf1. Mol Cell 15(1):69-81 PMID:15225549
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  • Moreau JL, et al. (2003) Regulated displacement of TBP from the PHO8 promoter in vivo requires Cbf1 and the Isw1 chromatin remodeling complex. Mol Cell 11(6):1609-20 PMID:12820973
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  • Erdemir T, et al. (2002) Saccharomyces cerevisiae C1D is implicated in both non-homologous DNA end joining and homologous recombination. Mol Microbiol 46(4):947-57 PMID:12421302
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  • Lee M, et al. (2000) Regulation of the Pcl7-Pho85 cyclin-cdk complex by Pho81. Mol Microbiol 38(2):411-22 PMID:11069666
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  • McAndrew PC, et al. (1998) Requirements for chromatin modulation and transcription activation by the Pho4 acidic activation domain. Mol Cell Biol 18(10):5818-27 PMID:9742099
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  • Hirst K, et al. (1994) The transcription factor, the Cdk, its cyclin and their regulator: directing the transcriptional response to a nutritional signal. EMBO J 13(22):5410-20 PMID:7957107
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  • Jayaraman PS, et al. (1994) The activation domain of a basic helix-loop-helix protein is masked by repressor interaction with domains distinct from that required for transcription regulation. EMBO J 13(9):2192-9 PMID:8187772
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  • Fisher F and Goding CR (1992) Single amino acid substitutions alter helix-loop-helix protein specificity for bases flanking the core CANNTG motif. EMBO J 11(11):4103-9 PMID:1327757
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  • Fisher F, et al. (1991) C-myc and the yeast transcription factor PHO4 share a common CACGTG-binding motif. Oncogene 6(7):1099-104 PMID:1861859
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