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    22822 Publications
    3073 Total Profiles
    18 Edited Profiles

    Pluth, Janice

    TitleBiologist Scientist/Engr
    SchoolLawrence Berkeley National Lab
    DepartmentLife Sciences
    Address1 Cyclotron Road
    Berkeley CA 94720
    Phone510/486-5799

       Bibliographic 
       Publications
      Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can sign in to make corrections and additions, or contact us for help.
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      1. Sridharan DM, Chappell LJ, Whalen MK, Cucinotta FA, Pluth JM. Defining the Biological Effectiveness of Components of High-LET Track Structure. Radiat Res. 2015 Jul; 184(1):105-19.
        View in: PubMed
      2. Sridharan DM, Asaithamby A, Bailey SM, Costes SV, Doetsch PW, Dynan WS, Kronenberg A, Rithidech KN, Saha J, Snijders AM, Werner E, Wiese C, Cucinotta FA, Pluth JM. Understanding Cancer Development Processes after HZE-Particle Exposure: Roles of ROS, DNA Damage Repair and Inflammation. Radiat Res. 2015 Jan; 183(1):1-26.
        View in: PubMed
      3. Wang M, Saha J, Hada M, Anderson JA, Pluth JM, O'Neill P, Cucinotta FA. Novel Smad proteins localize to IR-induced double-strand breaks: interplay between TGFß and ATM pathways. Nucleic Acids Res. 2013 Jan; 41(2):933-42.
        View in: PubMed
      4. Wang M, Hada M, Saha J, Sridharan DM, Pluth JM, Cucinotta FA. Protons sensitize epithelial cells to mesenchymal transition. PLoS One. 2012; 7(7):e41249.
        View in: PubMed
      5. Sridharan DM, Whalen MK, Almendrala D, Cucinotta FA, Kawahara M, Yannone SM, Pluth JM. Increased Artemis levels confer radioresistance to both high and low LET radiation exposures. Radiat Oncol. 2012; 7:96.
        View in: PubMed
      6. Wang M, Hada M, Huff J, Pluth JM, Anderson J, O'Neill P, Cucinotta FA. Heavy ions can enhance TGFß mediated epithelial to mesenchymal transition. J Radiat Res. 2012; 53(1):51-7.
        View in: PubMed
      7. Hu S, Pluth JM, Cucinotta FA. Putative binding modes of Ku70-SAP domain with double strand DNA: a molecular modeling study. J Mol Model. 2012 May; 18(5):2163-74.
        View in: PubMed
      8. Hada M, Huff JL, Patel ZS, Kawata T, Pluth JM, George KA, Cucinotta FA. AT cells are not radiosensitive for simple chromosomal exchanges at low dose. Mutat Res. 2011 Nov 1; 716(1-2):76-83.
        View in: PubMed
      9. Chappell LJ, Whalen MK, Gurai S, Ponomarev A, Cucinotta FA, Pluth JM. Analysis of flow cytometry DNA damage response protein activation kinetics after exposure to x rays and high-energy iron nuclei. Radiat Res. 2010 Dec; 174(6):691-702.
        View in: PubMed
      10. Costes SV, Chiolo I, Pluth JM, Barcellos-Hoff MH, Jakob B. Spatiotemporal characterization of ionizing radiation induced DNA damage foci and their relation to chromatin organization. Mutat Res. 2010 Apr-Jun; 704(1-3):78-87.
        View in: PubMed
      11. George KA, Hada M, Jackson LJ, Elliott T, Kawata T, Pluth JM, Cucinotta FA. Dose response of gamma rays and iron nuclei for induction of chromosomal aberrations in normal and repair-deficient cell lines. Radiat Res. 2009 Jun; 171(6):752-63.
        View in: PubMed
      12. Whalen MK, Gurai SK, Zahed-Kargaran H, Pluth JM. Specific ATM-mediated phosphorylation dependent on radiation quality. Radiat Res. 2008 Sep; 170(3):353-64.
        View in: PubMed
      13. Cucinotta FA, Pluth JM, Anderson JA, Harper JV, O'Neill P. Biochemical kinetics model of DSB repair and induction of gamma-H2AX foci by non-homologous end joining. Radiat Res. 2008 Feb; 169(2):214-22.
        View in: PubMed
      14. Pluth JM, Yamazaki V, Cooper BA, Rydberg BE, Kirchgessner CU, Cooper PK. DNA double-strand break and chromosomal rejoining defects with misrejoining in Nijmegen breakage syndrome cells. DNA Repair (Amst). 2008 Jan 1; 7(1):108-18.
        View in: PubMed
      15. Shimura T, Martin MM, Torres MJ, Gu C, Pluth JM, DeBernardi MA, DiBernardi MA, McDonald JS, Aladjem MI. DNA-PK is involved in repairing a transient surge of DNA breaks induced by deceleration of DNA replication. J Mol Biol. 2007 Mar 30; 367(3):665-80.
        View in: PubMed
      16. Wang J, Pluth JM, Cooper PK, Cowan MJ, Chen DJ, Yannone SM. Artemis deficiency confers a DNA double-strand break repair defect and Artemis phosphorylation status is altered by DNA damage and cell cycle progression. DNA Repair (Amst). 2005 May 2; 4(5):556-70.
        View in: PubMed
      17. Pluth JM, Fried LM, Kirchgessner CU. Severe combined immunodeficient cells expressing mutant hRAD54 exhibit a marked DNA double-strand break repair and error-prone chromosome repair defect. Cancer Res. 2001 Mar 15; 61(6):2649-55.
        View in: PubMed
      18. Pluth JM, Nelson DO, Ramsey MJ, Tucker JD. The relationship between genotype and chromosome aberration frequencies in a normal adult population. Pharmacogenetics. 2000 Jun; 10(4):311-9.
        View in: PubMed
      19. Pluth JM, Ramsey MJ, Tucker JD. Role of maternal exposures and newborn genotypes on newborn chromosome aberration frequencies. Mutat Res. 2000 Feb 16; 465(1-2):101-11.
        View in: PubMed
      20. Johnson KL, Nath J, Pluth JM, Tucker JD. The distribution of chromosome damage, non-reciprocal translocations and clonal aberrations in lymphocytes from Chernobyl clean-up workers. Mutat Res. 1999 Feb 2; 439(1):77-85.
        View in: PubMed
      21. Pluth JM, O'Neill JP, Nicklas JA, Albertini RJ. Molecular bases of hprt mutations in malathion-treated human T-lymphocytes. Mutat Res. 1998 Feb 2; 397(2):137-48.
        View in: PubMed
      22. Pluth JM, Nicklas JA, O'Neill JP, Albertini RJ. Increased frequency of specific genomic deletions resulting from in vitro malathion exposure. Cancer Res. 1996 May 15; 56(10):2393-9.
        View in: PubMed
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