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Maga, G; van Loon, B; Crespan, E; Villani, G; Hübscher, U (2009). The block of DNA polymerase delta strand displacement activity by an abasic site can be rescued by the concerted action of DNA polymerase beta and Flap endonuclease 1. Journal of Biological Chemistry, 284(21):14267-1475.
Amoroso, A; Crespan, E; Wimmer, U; Hubscher, U; Maga, G (2008). DNA Polymerases and Oxidative Damage: Friends or Foes? Current Molecular Pharmacology, 1(2):162-170.
Belousova, E A; Crespan, E; Lebedeva, N A; Rechunova, N J; Hübscher, U; Maga, G; Lavrik, O I (2008). Photoreactive DNA Probes as a Tool for Studying the Translesion Synthesis System in Mammalian Cell Extracts. Medicinal Chemistry, 4(2):155-162.
Crespan, E; Hübscher, U; Maga, G (2007). Error-free bypass of 2-hydroxyadenine by human DNA polymerase lambda with Proliferating Cell Nuclear Antigen and Replication Protein A in different sequence contexts. Nucleic Acids Research, 35(15):5173-5181.
Cancio, R; Silvestri, R; Ragno, R; Artico, M; De Martino, G; La Regina, G; Crespan, E; Zanoli, S; Hübscher, U; Spadari, S; Maga, G (2005). High potency of indolyl aryl sulfone nonnucleoside inhibitors towards drug-resistant human immunodeficiency virus type 1 reverse transcriptase mutants is due to selective targeting of different mechanistic forms of the enzyme. Antimicrobial Agents and Chemotherapy, 49(11):4546-4554.
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.
Crespan, E; Locatelli, G A; Cancio, R; Hübscher, U; Spadari, S; Maga, G (2005). Drug resistance mutations in the nucleotide binding pocket of human immunodeficiency virus type 1 reverse transcriptase differentially affect the phosphorolysis-dependent primer unblocking activity in the presence of stavudine and zidovudine and its inhibition by efavirenz. Antimicrobial Agents and Chemotherapy, 49(1):342-349.