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Nucleic Acids Research|December 7, 2006
Expanding the repertoire of DNA polymerase substrates: template-instructed incorporation of non-nucleoside triphosphate analogues by DNA polymerases beta and lambdaEmmanuele Crespan, Ludmila Alexandrova, Anastasiya Khandazhinskaya, et al.Plos One|April 9, 2014
Gap-directed translesion DNA synthesis of an abasic site on circular DNA templates by a human replication complexGiuseppe Villani, Igor Shevelev, Eleonora Orlando, et al.The Journal of Biological Chemistry|October 9, 2002
Human DNA polymerase lambda functionally and physically interacts with proliferating cell nuclear antigen in normal and translesion DNA synthesisGiovanni Maga, Giuseppe Villani, Kristijan Ramadan, et al.The Biochemical Journal|June 10, 2010
Effect of 8-oxoguanine and abasic site DNA lesions on in vitro elongation by human DNA polymerase in the presence of replication protein A and proliferating-cell nuclear antigenGiada A Locatelli, Helmut Pospiech, Nicolas Tanguy Le Gac, et al.Proceedings of the National Academy of Sciences of the United States of America|December 24, 2008
Replication protein A and proliferating cell nuclear antigen coordinate DNA polymerase selection in 8-oxo-guanine repairGiovanni Maga, Emmanuele Crespan, Ursula Wimmer, et al.Nucleic Acids Research|August 18, 2004
The human Rad9/Rad1/Hus1 damage sensor clamp interacts with DNA polymerase beta and increases its DNA substrate utilisation efficiency: implications for DNA repairMagali Toueille, Nazim El-Andaloussi, Isabelle Frouin, et al.The Journal of Biological Chemistry|July 16, 2011
In vitro gap-directed translesion DNA synthesis of an abasic site involving human DNA polymerases epsilon, lambda, and betaGiuseppe Villani, Ulrich Hubscher, Nadege Gironis, et al.Nucleic Acids Research|July 27, 2005
Incorporation of non-nucleoside triphosphate analogues opposite to an abasic site by human DNA polymerases beta and lambdaEmmanuele Crespan, Samantha Zanoli, Anastasiya Khandazhinskaya, et al.Molecular Pharmacology|May 20, 2005
Diketo hexenoic acid derivatives are novel selective non-nucleoside inhibitors of mammalian terminal deoxynucleotidyl transferases, with potent cytotoxic effect against leukemic cellsGiada A Locatelli, Roberto Di Santo, Emmanuele Crespan, et al.Pageof 3