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The Journal of Biological Chemistry|October 11, 1996
Recognition of DNA adducts by human nucleotide excision repair. Evidence for a thermodynamic probing mechanismD Gunz, M T Hess, H Naegeli
Nucleic Acids Research|March 1, 1996
A repair competition assay to assess recognition by human nucleotide excision repairM T Hess, D Gunz, H Naegeli
The Journal of Biological Chemistry|October 17, 1998
Stereoselectivity of human nucleotide excision repair promoted by defective hybridizationM T Hess, H Naegeli, M Capobianco
Proceedings of the National Academy of Sciences of the United States of America|June 24, 1997
Bipartite substrate discrimination by human nucleotide excision repairM T Hess, U Schwitter, M Petretta, et al.
Chemistry & Biology|February 1, 1996
Site-specific DNA substrates for human excision repair: comparison between deoxyribose and base adductsM T Hess, U Schwitter, M Petretta, et al.
Biochemistry|February 25, 1997
DNA synthesis arrest at C4'-modified deoxyribose residuesM T Hess, U Schwitter, M Petretta, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 26, 1999
Recognition of nonhybridizing base pairs during nucleotide excision repair of DNAN Buschta-Hedayat, T Buterin, M T Hess, et al.
Cancer Research|May 15, 1998
Impairment of nucleotide excision repair by apoptosis in UV-irradiated mouse cellsM P Vreeswijk, B E Westland, M T Hess, et al.
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