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Nucleic Acids Research|December 11, 1994
Daunomycin modifies the sequence-selective recognition of DNA by actinomycinG S Ridge, C Bailly, D E Graves, et al.Biochemistry|July 26, 1994
Use of a photoactive derivative of actinomycin to investigate shuffling between binding sites on DNAC Bailly, D E Graves, G Ridge, et al.Journal of Molecular Recognition : JMR|May 1, 1997
The influence of the exocyclic amino group characteristic of GC base pairs on molecular recognition of specific nucleotide sequences in DNA by berenil and DAPIM J Waring, C BaillyJournal of Molecular Recognition : JMR|June 1, 1994
DNA recognition by intercalators and hybrid moleculesM J Waring, C BaillyNucleic Acids Research|March 25, 1995
Transferring the purine 2-amino group from guanines to adenines in DNA changes the sequence-specific binding of antibioticsC Bailly, M J WaringNucleic Acids Research|September 22, 1998
The use of diaminopurine to investigate structural properties of nucleic acids and molecular recognition between ligands and DNAC Bailly, M J WaringThe Biochemical Journal|April 16, 1998
DNA recognition by quinoxaline antibiotics: use of base-modified DNA molecules to investigate determinants of sequence-specific binding of triostin A and TANDEMC Bailly, M J WaringJournal of Biomolecular Structure & Dynamics|February 1, 1995
Comparison of different footprinting methodologies for detecting binding sites for a small ligand on DNAC Bailly, M J WaringGene|November 4, 1994
The purine 2-amino group as a critical recognition element for binding of small molecules to DNAM J Waring, C BaillyBiochemistry|June 15, 1993
Preferential intercalation at AT sequences in DNA by lucanthone, hycanthone, and indazole analogs. A footprinting studyC Bailly, M J WaringPageof 44