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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.

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.

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.

Blanca, G; Baldanti, F; Paolucci, S; Skoblov, A Y; Victorova, L; Hübscher, U; Gerna, G; Spadari, S; Maga, G (2003). Nevirapine resistance mutation at codon 181 of the HIV-1 reverse transcriptase confers stavudine resistance by increasing nucleotide substrate discrimination and phosphorolytic activity. Journal of Biological Chemistry, 278(18):15469-15472.

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.

This list was generated on Wed Jul 26 14:18:20 2017 CEST.