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Nathan P. Gomes

TitleResearch Associate
InstitutionUniversity of Colorado Boulder
DepartmentBiology-MCD Instruction
Phone303/735-2837

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    Collapse selected publications
    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Gomes NP, Frederick B, Jacobsen JR, Chapnick D, Su TT. A High Throughput Screen with a Clonogenic Endpoint to Identify Radiation Modulators of Cancer. Radiat Res. 2023 02 01; 199(2):132-147. PMID: 36583948.
      View in: PubMed
    2. Keysar SB, Gomes N, Miller B, Jackson BC, Le PN, Morton JJ, Reisinger J, Chimed TS, Gomez KE, Nieto C, Frederick B, Pronk GJ, Somerset HL, Tan AC, Wang XJ, Raben D, Su TT, Jimeno A. Inhibiting Translation Elongation with SVC112 Suppresses Cancer Stem Cells and Inhibits Growth in Head and Neck Squamous Carcinoma. Cancer Res. 2020 03 01; 80(5):1183-1198. PMID: 31911553.
      View in: PubMed
    3. Stickel SA, Gomes NP, Frederick B, Raben D, Su TT. Bouvardin is a Radiation Modulator with a Novel Mechanism of Action. Radiat Res. 2015 Oct; 184(4):392-403. PMID: 26414509.
      View in: PubMed
    4. Stickel S, Gomes N, Su TT. The Role of Translational Regulation in Survival after Radiation Damage; an Opportunity for Proteomics Analysis. Proteomes. 2014 Jun; 2(2):272-290. PMID: 26269784.
      View in: PubMed
    5. Gomes NP, Espinosa JM. Disparate chromatin landscapes and kinetics of inactivation impact differential regulation of p53 target genes. Cell Cycle. 2010 Sep 01; 9(17):3428-37. PMID: 20818159.
      View in: PubMed
    6. Gomes NP, Espinosa JM. Gene-specific repression of the p53 target gene PUMA via intragenic CTCF-Cohesin binding. Genes Dev. 2010 May 15; 24(10):1022-34. PMID: 20478995.
      View in: PubMed
    7. Gomes NP, Espinosa JM. Differential regulation of p53 target genes: it's (core promoter) elementary. Genes Dev. 2010 Jan 15; 24(2):111-4. PMID: 20080948.
      View in: PubMed
    8. Gomes NP, Bjerke G, Llorente B, Szostek SA, Emerson BM, Espinosa JM. Gene-specific requirement for P-TEFb activity and RNA polymerase II phosphorylation within the p53 transcriptional program. Genes Dev. 2006 Mar 01; 20(5):601-12. PMID: 16510875.
      View in: PubMed
    9. Br?s V, Gomes N, Pickle L, Jones KA. A human splicing factor, SKIP, associates with P-TEFb and enhances transcription elongation by HIV-1 Tat. Genes Dev. 2005 May 15; 19(10):1211-26. PMID: 15905409.
      View in: PubMed
    10. Gomes N, Garber ME, Jones KA. Techniques to analyze the HIV-1 Tat and TAR RNA-dependent recruitment and activation of the cyclin T1: CDK9 (P-TEFb) transcription elongation factor. Methods Enzymol. 2003; 371:324-36. PMID: 14712711.
      View in: PubMed
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