Suchbegriffe: DNA REPAIR - , . Treffer: 9
Boege, Y; Malehmir, M; Healy, ME; Bettermann, K; Lorentzen, A; Vucur, M; Ahuja, AK; Böhm, F; Mertens, JC; Shimizu, Y; Frick, L; Remouchamps, C; Mutreja, K; Kähne, T; Sundaravinayagam, D; Wolf, MJ; Rehrauer, H; Koppe, C; Speicher, T; Padrissa-Altés, S; Maire, R; Schattenberg, JM; Jeong, JS; Liu, L; Zwirner, S; Boger, R; Hüser, N; Davis, RJ; Müllhaupt, B; Moch, H; Schulze-Bergkamen, H; Clavien, PA; Werner, S; Borsig, L; Luther, SA; Jost, PJ; Weinlich, R; Unger, K; Behrens, A; Hillert, L; Dillon, C; Di Virgilio, M; Wallach, D; Dejardin, E; Zender, L; Naumann, M; Walczak, H; Green, DR; Lopes, M; Lavrik, I; Luedde, T; Heikenwalder, M; Weber, A
A Dual Role of Caspase-8 in Triggering and Sensing Proliferation-Associated DNA Damage, a Key Determinant of Liver Cancer Development.
Cancer Cell. 2017; 32(3):342-359
Doi: 10.1016/j.ccell.2017.08.010
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Redrejo-Rodríguez, M; Vigouroux, A; Mursalimov, A; Grin, I; Alili, D; Koshenov, Z; Akishev, Z; Maksimenko, A; Bissenbaev, AK; Matkarimov, BT; Saparbaev, M; Ishchenko, AA; Moréra, S
Structural comparison of AP endonucleases from the exonuclease III family reveals new amino acid residues in human AP endonuclease 1 that are involved in incision of damaged DNA.
Biochimie. 2016; 128-129:20-33
Doi: 10.1016/j.biochi.2016.06.011
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Szkandera, J; Absenger, G; Liegl-Atzwanger, B; Pichler, M; Stotz, M; Gerger, S; Zacherl, M; Renner, W; Haijun, M; Leithner, A; Gerger, A
Common gene variants in RAD51, XRCC2 and XPD are not associated with clinical outcome in soft-tissue sarcoma patients.
Cancer Epidemiol. 2013; 37(6):1003-1009
Doi: 10.1016/j.canep.2013.10.003
Web of Science
PubMed
FullText
FullText_MUG
Schrama, D; Scherer, D; Schneider, M; Zapatka, M; Bröcker, EB; Schadendorf, D; Ugurel, S; Kumar, R; Becker, JC
ERCC5 p.Asp1104His and ERCC2 p.Lys751Gln Polymorphisms Are Independent Prognostic Factors for the Clinical Course of Melanoma.
J Invest Dermatol. 2011; 131(6):1280-1290
Doi: 10.1038/jid.2011.35
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Olipitz, W; Tilz, GP; Beham-Schmid, C; Eibinger, C; Kerzina, P; Sill, H
Microsatellite analysis in acute myeloid leukaemia evolving from myelodysplastic syndrome.
Br J Haematol. 2001; 112(1):248-249
Doi: 10.1046%2Fj.1365-2141.2001.02497.x
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Auner, HW; Olipitz, W; Hoefler, G; Bodner, C; Konrad, D; Crevenna, R; Linkesch, W; Sill, H
Mutational analysis of the DNA mismatch repair gene hMLH1 in myeloid leukaemias.
Br J Haematol. 1999; 106(3):706-708
Doi: 10.1046%2Fj.1365-2141.1999.01595.x
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar
Yarosh, DB; O'Connor, A; Alas, L; Potten, C; Wolf, P
Photoprotection by topical DNA repair enzymes: molecular correlates of clinical studies.
Photochem Photobiol. 1999; 69(2):136-140
Doi: 10.1111/j.1751-1097.1999.tb03265.x
Web of Science
PubMed
FullText
FullText_MUG
Sill, H; Goldman, JM; Cross, NC
Rarity of microsatellite alterations in acute myeloid leukaemia.
Br J Cancer. 1996; 74(2):255-257
Doi: 10.1038/bjc.1996.347
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Wolf, P; Cox, P; Yarosh, DB; Kripke, ML
Sunscreens and T4N5 liposomes differ in their ability to protect against ultraviolet-induced sunburn cell formation, alterations of dendritic epidermal cells, and local suppression of contact hypersensitivity.
J Invest Dermatol. 1995; 104(2): 287-292.
Doi: 10.1111/1523-1747.ep12612828
[OPEN ACCESS]
Web of Science
PubMed
FullText
FullText_MUG
Google Scholar