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Accounts of Chemical Research|May 21, 2003
Tyrosinase autoactivation and the chemistry of ortho-quinone aminesEdward J Land, Christopher A Ramsden, Patrick A RileyThe Tohoku Journal of Experimental Medicine|July 31, 2007
The mechanism of suicide-inactivation of tyrosinase: a substrate structure investigationEdward J Land, Christopher A Ramsden, Patrick A RileyPigment Cell Research|July 16, 2003
Mechanistic studies of catechol generation from secondary quinone amines relevant to indole formation and tyrosinase activationEdward J Land, Christopher A Ramsden, Patrick A Riley, et al.Organic & Biomolecular Chemistry|June 25, 2005
Oxidation of N-substituted dopamine derivatives: irreversible formation of a spirocyclic productEdward J Land, Almudena Perona, Christopher A Ramsden, et al.Organic & Biomolecular Chemistry|February 20, 2009
Dopamine quinone chemistry: a study of the influence of amide, amidine and guanidine substituents [-NH-CX-Y] on the mode of reactionEdward J Land, Almudena Perona, Christopher A Ramsden, et al.Organic & Biomolecular Chemistry|October 2, 2003
Formation of para-quinomethanes via 4-aminobutylcatechol oxidation and ortho-quinone tautomerismEdward J Land, Christopher A Ramsden, Patrick A Riley, et al.The Tohoku Journal of Experimental Medicine|November 7, 2008
Evidence consistent with the requirement of cresolase activity for suicide inactivation of tyrosinaseEdward J Land, Christopher A Ramsden, Patrick A Riley, et al.Bioorganic & Medicinal Chemistry|March 25, 2014
Tyrosinase: the four oxidation states of the active site and their relevance to enzymatic activation, oxidation and inactivationChristopher A Ramsden, Patrick A RileyBioorganic & Medicinal Chemistry Letters|April 29, 2014
Mechanistic aspects of the tyrosinase oxidation of hydroquinoneChristopher A Ramsden, Patrick A RileyPigment Cell Research|March 10, 2006
Mechanistic studies of melanogenesis: the influence of N-substitution on dopamine quinone cyclizationJan Borovansky, Ruth Edge, Edward J Land, et al.Pageof 4