An unusual decarboxylative Maillard reaction between L-DOPA and D-glucose under biomimetic conditions: Factors governing competition with Pictet-Spengler condensation
P. Manini et al., An unusual decarboxylative Maillard reaction between L-DOPA and D-glucose under biomimetic conditions: Factors governing competition with Pictet-Spengler condensation, J ORG CHEM, 66(15), 2001, pp. 5048-5053
In 0.1 M phosphate buffer at pH 7.4 and 37 degreesC, the tyrosine metabolit
e L-3,4-dihydroxyphenylalanine (L-DOPA) reacts smoothly with D-glucose to a
fford, besides diastereoisomeric tetrahydroisoquinolines 1 and 2 by Pictet-
Spengler condensation, a main product shown to be the unexpected decarboxyl
ated Amadori compound N-(1-deoxy-D-fructos-1-yl)-dopamine (3). Under simila
r conditions, dopamine gave only tetrahydroisoquinoline products 4 and 5, w
hereas L-tyrosine gave exclusively the typical Amadori compound 6. Fe3+ and
Cu2+ ions, which accumulate in relatively high levels in parkinsonian subs
tantia nigra, both inhibited the formation of 3. Cu2+ ions also inhibited t
he formation of I and 2 to a similar degree, whereas Fe3+ ions increased th
e yields of I and 2. Apparently, the formation of 3 would not be compatible
with a simple decarboxylation of the initial Schiff base adduct, but would
rather involve the decarboxylative decomposition of a putative oxazolidine
-5-one intermediate assisted by the catechol ring. These results report the
first decarboxylative Maillard reaction between an amino acid and a carboh
ydrate under biomimetic conditions and highlight the critical role of trans
ition metal ions in the competition with Pictet-Spengler condensation.