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Biochemistry|May 23, 2000
Recognition of base mismatches in DNA by 5,6-chrysenequinone diimine complexes of rhodium(III): a proposed mechanism for preferential binding in destabilized regions of the double helixB A Jackson, J K BartonCurrent Protocols in Nucleic Acid Chemistry|April 23, 2008
Probing nucleic acid structure with shape-selective rhodium and ruthenium complexesB A Jackson, J K BartonBiochemistry|April 14, 1999
A versatile mismatch recognition agent: specific cleavage of a plasmid DNA at a single base mispairB A Jackson, V Y Alekseyev, J K BartonMutation Research|February 25, 2000
DNA repair: models for damage and mismatch recognitionS R Rajski, B A Jackson, J K BartonJournal of Biomolecular Structure & Dynamics|December 1, 1983
Tris (phenanthroline) metal complexes: probes for DNA helicityJ K BartonBiochemistry|June 22, 1993
A distinct intron-DNA structure in simian virus 40 T-antigen and adenovirus 2 E1A genesI Lee, J K BartonBiochemistry|October 11, 1994
Sequence-specific recognition of DNA by phenanthrenequinone diimine complexes of rhodium(III): importance of steric and van der Waals interactionsA Sitlani, J K BartonProstaglandins, Leukotrienes, and Medicine|April 1, 1986
Renal prostaglandin E2 synthesis in the Brattleboro homozygous diabetes insipidus ratB A JacksonJournal of Cellular Physiology|October 1, 1986
Prostaglandin E2 synthesis in the inner medullary collecting duct of the rat: implications for vasopressin-dependent cyclic AMP formationB A JacksonPageof 14