Mechanistic studies of melanogenesis: the influence of N-substitution on dopamine quinone cyclization |
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Authors: | Borovansky Jan Edge Ruth Land Edward J Navaratnam Suppiah Pavel Stan Ramsden Christopher A Riley Patrick A Smit Nico P M |
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Affiliation: | Department of Biochemistry, 1st Faculty of Medicine, Charles University, U.nemocnice 5, 128 53 Prague 2, Czech Republic. |
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Abstract: | The influence of side-chain structure on the mode of reaction of ortho-quinone amines has been investigated with a view, ultimately, to developing potential methods of therapeutic intervention by manipulating the early stages of melanogenesis. Four N-substituted dopamine derivatives have been prepared and quinone formation studied using pulse radiolysis and tyrosinase-oximetry. Ortho-quinones with an amide or urea side chain were relatively stable, although evidence for slow formation of isomeric para-quinomethanes was observed. A thiourea derivative cyclized fairly rapidly (k = 1.7/s) to a product containing a seven-membered ring, whereas a related amidine gave more rapidly (k approximately 2.5 x 10(2)/s) a stable spirocyclic product. The results suggest that cyclization of amides, ureas and carbamates (NHCO-X; X = R, NHR or OR) does not occur and is not, therefore, a viable approach to the formation of tyrosinase-activated antimelanoma prodrugs. It is also concluded that for N-acetyldopamine spontaneous ortho-quinone to para-quinomethane isomerization is slow. |
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