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Hentschel, Sarah; Alzeer, Jawad; Angelov, Todor; Schärer, Orlando D; Luedtke, Nathan W (2012). Synthesis of DNA interstrand crosslinks using a photocaged nucleobase. Angewandte Chemie Internationale Edition, 51(14):3466-3469.

Enoiu, Milica; Jiricny, Josef; Schärer, Orlando D (2012). Repair of cisplatin-induced DNA interstrand crosslinks by a replication-independent pathway involving transcription-coupled repair and translesion synthesis. Nucleic Acids Research, 40(18):8953-8964.

Ho, The Vinh; Guainazzi, Angelo; Derkunt, Semsi Burak; Enoiu, Milica; Schärer, Orlando D (2011). Structure-dependent bypass of DNA interstrand crosslinks by translesion synthesis polymerases. Nucleic Acids Research, 39(17):7455-7464.

Angelov, Todor; Guainazzi, Angelo; Schärer, Orlando D (2009). Generation of DNA interstrand cross-links by post-synthetic reductive amination. Organic Letters, 11(3):661-664.

Hohl, Marcel; Dunand-Sauthier, Isabelle; Staresincic, Lidija; Jaquier-Gubler, Pascale; Thorel, Fabrizio; Modesti, Mauro; Clarkson, Stuart G; Schärer, Orlando D (2007). Domain swapping between FEN-1 and XPG defines regions in XPG that mediate nucleotide excision repair activity and substrate specificity. Nucleic Acids Research, 35(9):3053-3063.

Alzeer, Jawad; Schärer, Orlando D (2006). A modified thymine for the synthesis of site-specific thymine-guanine DNA interstrand crosslinks. Nucleic Acids Research, 34(16):4458-4466.

Gillet, Ludovic C J; Schärer, Orlando D (2006). Molecular mechanisms of mammalian global genome nucleotide excision repair. Chemical Reviews, 106(2):253-276.

Schärer, Orlando D (2005). DNA interstrand crosslinks: natural and drug-induced DNA adducts that induce unique cellular responses. ChemBioChem, 6(1):27-32.

Gillet, Ludovic C J; Alzeer, Jawad; Schärer, Orlando D (2005). Site-specific incorporation of N-(deoxyguanosin-8-yl)-2-acetylaminofluorene (dG-AAF) into oligonucleotides using modified 'ultra-mild' DNA synthesis. Nucleic Acids Research, 33(6):1961-1969.

This list was generated on Tue Aug 20 17:59:31 2019 CEST.