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Journal Abstract Search


154 related items for PubMed ID: 6185841

  • 21. Complementation of transformed fibroblasts from patients with combined xeroderma pigmentosum-Cockayne syndrome.
    Ellison AR, Nouspikel T, Jaspers NG, Clarkson SG, Gruenert DC.
    Exp Cell Res; 1998 Aug 25; 243(1):22-8. PubMed ID: 9716445
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  • 22. UV damage causes uncontrolled DNA breakage in cells from patients with combined features of XP-D and Cockayne syndrome.
    Berneburg M, Lowe JE, Nardo T, Araújo S, Fousteri MI, Green MH, Krutmann J, Wood RD, Stefanini M, Lehmann AR.
    EMBO J; 2000 Mar 01; 19(5):1157-66. PubMed ID: 10698956
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  • 23. Cockayne syndrome with delayed recovery of RNA synthesis after ultraviolet irradiation but normal ultraviolet survival.
    Sugita K, Suzuki N, Kojima T, Tanabe Y, Nakajima H, Hayashi A, Arima M.
    Pediatr Res; 1987 Jan 01; 21(1):34-7. PubMed ID: 2432457
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  • 24. Xeroderma pigmentosum--Cockayne syndrome complex: a further case.
    Hamel BC, Raams A, Schuitema-Dijkstra AR, Simons P, van der Burgt I, Jaspers NG, Kleijer WJ.
    J Med Genet; 1996 Jul 01; 33(7):607-10. PubMed ID: 8818951
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  • 27. Relative repair of adenovirus damaged by sunlamp, UV and gamma-irradiation in Cockayne syndrome fibroblasts is different from that in xeroderma pigmentosum fibroblasts.
    Rainbow AJ.
    Photochem Photobiol; 1989 Aug 01; 50(2):201-7. PubMed ID: 2675138
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  • 28. Genetic analysis of twenty-two patients with Cockayne syndrome.
    Stefanini M, Fawcett H, Botta E, Nardo T, Lehmann AR.
    Hum Genet; 1996 Apr 01; 97(4):418-23. PubMed ID: 8834235
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  • 29. Gamma-ray-enhanced reactivation of irradiated adenovirus in Xeroderma pigmentosum and Cockayne syndrome fibroblasts.
    Jeeves WP, Rainbow AJ.
    Radiat Res; 1983 Jun 01; 94(3):480-98. PubMed ID: 6856785
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  • 30. Why Cockayne syndrome patients do not get cancer despite their DNA repair deficiency.
    Reid-Bayliss KS, Arron ST, Loeb LA, Bezrookove V, Cleaver JE.
    Proc Natl Acad Sci U S A; 2016 Sep 06; 113(36):10151-6. PubMed ID: 27543334
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  • 31. Prenatal diagnosis of xeroderma pigmentosum and Cockayne syndrome.
    Cleaver JE, Volpe JP, Charles WC, Thomas GH.
    Prenat Diagn; 1994 Oct 06; 14(10):921-8. PubMed ID: 7534923
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  • 32. Xeroderma pigmentosum group E and DDB2, a smaller subunit of damage-specific DNA binding protein: proposed classification of xeroderma pigmentosum, Cockayne syndrome, and ultraviolet-sensitive syndrome.
    Itoh T.
    J Dermatol Sci; 2006 Feb 06; 41(2):87-96. PubMed ID: 16325378
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  • 34. Detection of reduced RNA synthesis in UV-irradiated Cockayne syndrome group B cells using an isolated nuclear system.
    Yamada A, Masutani C, Hanaoka F.
    Biochim Biophys Acta; 2002 Oct 21; 1592(2):129-34. PubMed ID: 12379475
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  • 35. Defective transcription-coupled repair of oxidative base damage in Cockayne syndrome patients from XP group G.
    Cooper PK, Nouspikel T, Clarkson SG, Leadon SA.
    Science; 1997 Feb 14; 275(5302):990-3. PubMed ID: 9020084
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  • 36. Impaired jun-NH2-terminal kinase activation by ultraviolet irradiation in fibroblasts of patients with Cockayne syndrome complementation group B.
    Dhar V, Adler V, Lehmann A, Ronai Z.
    Cell Growth Differ; 1996 Jun 14; 7(6):841-6. PubMed ID: 8780897
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  • 37. Roles of poly(ADP-ribose) synthesis in repair and replication in normal human, Cockayne syndrome, and xeroderma pigmentosum fibroblasts after UV irradiation.
    Fujiwara Y, Goto K, Yamamoto K, Ichihashi M.
    Princess Takamatsu Symp; 1983 Jun 14; 13():209-18. PubMed ID: 6418714
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  • 38. Use of lymphoblastoid cell lines to evaluate the hypersensitivity to ultraviolet radiation in Cockayne syndrome.
    Otsuka F, Tarone RE, Cayeux S, Robbins JH.
    J Invest Dermatol; 1984 May 14; 82(5):480-4. PubMed ID: 6096450
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