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Journal Abstract Search


97 related items for PubMed ID: 3774554

  • 21. DNA strand bias in the repair of the p53 gene in normal human and xeroderma pigmentosum group C fibroblasts.
    Evans MK, Taffe BG, Harris CC, Bohr VA.
    Cancer Res; 1993 Nov 15; 53(22):5377-81. PubMed ID: 8221675
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  • 22. Nuclear matrix associated DNA is preferentially repaired in normal human fibroblasts, exposed to a low dose of ultraviolet light but not in Cockayne's syndrome fibroblasts.
    Mullenders LH, van Kesteren van Leeuwen AC, van Zeeland AA, Natarajan AT.
    Nucleic Acids Res; 1988 Nov 25; 16(22):10607-22. PubMed ID: 3205718
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  • 23. A processive versus a distributive mechanism of action correlates with differences in ability of normal and xeroderma pigmentosum group A endonucleases to incise damaged nucleosomal DNA.
    Feng S, Parrish DD, Lambert MW.
    Carcinogenesis; 1997 Feb 25; 18(2):279-86. PubMed ID: 9054619
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  • 24. Repair of psoralen adducts in human DNA: differences among xeroderma pigmentosum complementation groups.
    Cleaver JE, Gruenert DC.
    J Invest Dermatol; 1984 Apr 25; 82(4):311-5. PubMed ID: 6707485
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  • 25. Xeroderma pigmentosum: recent studies on the DNA repair defects.
    Friedberg EC.
    Arch Pathol Lab Med; 1978 Jan 25; 102(1):3-7. PubMed ID: 339872
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  • 26. Xeroderma pigmentosum variant with multisystem involvement.
    Hessel A, Siegle RJ, Mitchell DL, Cleaver JE.
    Arch Dermatol; 1992 Sep 25; 128(9):1233-7. PubMed ID: 1519938
    [Abstract] [Full Text] [Related]

  • 27. DNA excision repair in mammalian cell extracts.
    Wood RD, Coverley D.
    Bioessays; 1991 Sep 25; 13(9):447-53. PubMed ID: 1796907
    [Abstract] [Full Text] [Related]

  • 28. Phage T4 endonuclease V stimulates DNA repair replication in isolated nuclei from ultraviolet-irradiated human cells, including xeroderma pigmentosum fibroblasts.
    Smith CA, Hanawalt PC.
    Proc Natl Acad Sci U S A; 1978 Jun 25; 75(6):2598-602. PubMed ID: 275829
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  • 30. Requirement for functional DNA polymerase eta in genome-wide repair of UV-induced DNA damage during S phase.
    Auclair Y, Rouget R, Belisle JM, Costantino S, Drobetsky EA.
    DNA Repair (Amst); 2010 Jul 01; 9(7):754-64. PubMed ID: 20457011
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  • 31. Repair of damaged DNA by extracts from a xeroderma pigmentosum complementation group A revertant and expression of a protein absent in its parental cell line.
    Jones CJ, Cleaver JE, Wood RD.
    Nucleic Acids Res; 1992 Mar 11; 20(5):991-5. PubMed ID: 1549511
    [Abstract] [Full Text] [Related]

  • 32. The UV-damaged DNA binding protein mediates efficient targeting of the nucleotide excision repair complex to UV-induced photo lesions.
    Moser J, Volker M, Kool H, Alekseev S, Vrieling H, Yasui A, van Zeeland AA, Mullenders LH.
    DNA Repair (Amst); 2005 May 02; 4(5):571-82. PubMed ID: 15811629
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  • 34. Xeroderma pigmentosum variant (XP-V) correcting protein from HeLa cells has a thymine dimer bypass DNA polymerase activity.
    Masutani C, Araki M, Yamada A, Kusumoto R, Nogimori T, Maekawa T, Iwai S, Hanaoka F.
    EMBO J; 1999 Jun 15; 18(12):3491-501. PubMed ID: 10369688
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  • 35. APE1-dependent base excision repair of DNA photodimers in human cells.
    Gautam A, Fawcett H, Burdova K, Brazina J, Caldecott KW.
    Mol Cell; 2023 Oct 19; 83(20):3669-3678.e7. PubMed ID: 37816354
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  • 37. Repair of gamma-ray-induced DNA base damage in xeroderma pigmentosum cells.
    Fornace AJ, Dobson PP, Kinsella TJ.
    Radiat Res; 1986 Apr 19; 106(1):73-7. PubMed ID: 3961106
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  • 38. DNA repair in Potorous tridactylus.
    Buhl SN, Setlow RB, Regan JD.
    Biophys J; 1974 Oct 19; 14(10):791-803. PubMed ID: 4473053
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