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Number of items: 23.

Blasius, M; Buob, R; Shevelev, I V; Hubscher, U (2007). Enzymes involved in DNA ligation and end-healing in the radioresistant bacterium Deinococcus radiodurans. BMC Molecular Biology, 8 : 69:1-12.

Blasius, M; Shevelev, I V; Jolivet, E; Sommer, Suzanne; Hübscher, U (2006). DNA polymerase X from Deinococcus radiodurans possesses a structure-modulated 3'-->5' exonuclease activity involved in radioresistance. Molecular Microbiology, 60(1):165-176.

Maga, G; Shevelev, I V; Villani, G; Spadari, S; Hübscher, U (2006). Human replication protein A can suppress the intrinsic in vitro mutator phenotype of human DNA polymerase lambda. Nucleic Acids Research, 34(5):1405-1415.

Frouin, I; Toueille, M; Ferrari, E; Shevelev, I V; Hübscher, U (2005). Phosphorylation of human DNA polymerase lambda by the cyclin-dependent kinase Cdk2/cyclin A complex is modulated by its association with proliferating cell nuclear antigen. Nucleic Acids Research, 33(16):5354-5361.

Locatelli, G A; Di Santo, R; Crespan, E; Costi, R; Roux, A; Hübscher, U; Shevelev, I V; Blanca, G; Villani, G; Spadari, S; Maga, G (2005). Diketo hexenoic acid derivatives are novel selective non-nucleoside inhibitors of mammalian terminal deoxynucleotidyl transferases, with potent cytotoxic effect against leukemic cells. Molecular Pharmacology, 68(2):538-550.

Crespan, E; Zanoli, S; Khandazhinskaya, A; Shevelev, I V; Jasko, M; Alexandrova, L; Kukhanova, M; Blanca, G; Villani, G; Hübscher, U; Spadari, S; Maga, G (2005). Incorporation of non-nucleoside triphosphate analogues opposite to an abasic site by human DNA polymerases beta and lambda. Nucleic Acids Research, 33(13):4117-4127.

Locatelli, G A; Savio, M; Forti, L; Shevelev, I V; Ramadan, K; Stivala, L A; Vannini, V; Hübscher, U; Spadari, S; Maga, G (2005). Inhibition of mammalian DNA polymerases by resveratrol: mechanism and structural determinants. Biochemical Journal, 389(2):259-268.

Boudsocq, F; Benaim, P; Canitrot, Y; Knibiehler, M; Ausseil, F; Capp, J P; Bieth, A; Long, C; David, B; Shevelev, I V; Frierich-Heinecken, E; Hübscher, U; Amalric, F; Massiot, G; Hoffmann, J S; Cazaux, C (2005). Modulation of cellular response to cisplatin by a novel inhibitor of DNA polymerase beta. Molecular Pharmacology, 67(5):1485-1492.

Svetlova, M; Solovjeva, L; Blasius, M; Shevelev, I V; Hubscher, U; Hanawalt, P; Tomilin, N (2005). Differential incorporation of halogenated deoxyuridines during UV-induced DNA repair synthesis in human cells. DNA Repair, 4(3):359-366.

Maga, G; Ramadan, K; Locatelli, G A; Shevelev, I V; Spadari, S; Hübscher, U (2005). DNA elongation by the human DNA polymerase lambda polymerase and terminal transferase activities are differentially coordinated by proliferating cell nuclear antigen and replication protein A. Journal of Biological Chemistry, 280(3):1971-1981.

Ramadan, K; Shevelev, I V; Hübscher, U (2004). The DNA-polymerase-X family: controllers of DNA quality? Nature Reviews. Molecular Cell Biology, 5(12):43.

Maga, G; Blanca, G; Shevelev, I V; Frouin, I; Ramadan, K; Spadari, S; Villani, G; Hübscher, U (2004). The human DNA polymerase lambda interacts with PCNA through a domain important for DNA primer binding and the interaction is inhibited by p21/WAF1/CIP1. FASEB Journal, 18(14):1743-1745.

Blanca, G; Villani, G; Shevelev, I V; Ramadan, K; Spadari, S; Hübscher, U; Maga, G (2004). Human DNA polymerases lambda and beta show different efficiencies of translesion DNA synthesis past abasic sites and alternative mechanisms for frameshift generation. Biochemistry, 43(36):11605-11615.

Lecointe, F; Shevelev, I V; Bailone, A; Sommer, Suzanne; Hübscher, U (2004). Involvement of an X family DNA polymerase in double-stranded break repair in the radioresistant organism Deinococcus radiodurans. Molecular Microbiology, 53(6):1721-1730.

Toueille, M; El-Andaloussi, N; Frouin, I; Freire, R; Funk, D; Shevelev, I V; Friedrich-Heineken, E; Villani, G; Hottiger, M O; Hübscher, U (2004). The human Rad9/Rad1/Hus1 damage sensor clamp interacts with DNA polymerase beta and increases its DNA substrate utilisation efficiency: implications for DNA repair. Nucleic Acids Research, 32(11):3316-3324.

Ramadan, K; Shevelev, I V; Maga, G; Hübscher, U (2004). De novo DNA synthesis by human DNA polymerase lambda, DNA polymerase mu and terminal deoxyribonucleotidyl transferase. Journal of Molecular Biology, 339(2):395-404.

Shevelev, I V; Blanca, G; Villani, G; Ramadan, K; Spadari, S; Hübscher, U; Maga, G (2003). Mutagenesis of human DNA polymerase lambda: essential roles of Tyr505 and Phe506 for both DNA polymerase and terminal transferase activities. Nucleic Acids Research, 31(23):6916-6925.

Blanca, G; Shevelev, I V; Ramadan, K; Villani, G; Spadari, S; Hübscher, U; Maga, G (2003). Human DNA polymerase lambda diverged in evolution from DNA polymerase beta toward specific Mn(++) dependence: a kinetic and thermodynamic study. Biochemistry, 42(24):7467-7476.

Ramadan, K; Maga, G; Shevelev, I V; Villani, G; Blanco, L; Hübscher, U (2003). Human DNA polymerase lambda possesses terminal deoxyribonucleotidyl transferase activity and can elongate RNA primers: implications for novel functions. Journal of Molecular Biology, 328(1):63-72.

Maga, G; Villani, G; Ramadan, K; Shevelev, I V; Tanguy Le Gac, N; Blanco, L; Blanca, G; Spadari, S; Hübscher, U (2002). Human DNA polymerase lambda functionally and physically interacts with proliferating cell nuclear antigen in normal and translesion DNA synthesis. Journal of Biological Chemistry, 277(50):48434-48440.

Maga, G; Shevelev, I V; Ramadan, K; Spadari, S; Hübscher, U (2002). DNA polymerase theta purified from human cells is a high-fidelity enzyme. Journal of Molecular Biology, 319(2):359-369.

Ramadan, K; Shevelev, I V; Maga, G; Hübscher, U (2002). DNA polymerase lambda from calf thymus preferentially replicates damaged DNA. Journal of Biological Chemistry, 277(21):18454-18458.

Shevelev, I V; Hübscher, U (2002). The 3' 5' exonucleases. Nature Reviews. Molecular Cell Biology, 3(5):364-376.

This list was generated on Thu Jul 20 16:14:30 2017 CEST.