Chemistry Reference
In-Depth Information
95. Hemscheidt T, Zenk MH. Partial purification and characterization of a NADPH
dependent tetrahydroalstonine synthase from Catharanthus rosues cell suspension
cultures. Plant Cell Rep. 1985;4:216-219.
96. Stockigt J, Hemscheidt T, Hofle G, Heinstein P, Formacek V. Steric cours of
hydrogen transfer during enzymatic formation of 3a-heteroyohimbine alkaloids. Bio-
chemistry 1983;22:3448-3452.
97. de Luca V. Biochemistry and molecular biology of indole alkaloid biosynthesis: the
implication of recent discoveries. Rec. Adv. Phytochem. 2003;37:181-202.
98. St. Pierre B, de Luca V. A cytochrome P-450 monooxygenase catalyzes the first step
in the conversion of tabersonine to vindoline in Catharanthus roseus. Plant Physiol.
1995;109:131-139.
99. Schroder G, Unterbusch E, Kaltenbach M, Schmidt J, Strack D, de Luca V, Schroder
J. Light induced cytochrome P450 dependent enzyme in indole alkaoid biosynthesis:
tabersonine 16-hydroxylase. FEBS Lett. 1999;458:97-102.
100. Cacace S, Schroder G, Wehinger E, Strack D, Schmidt J, Schroder J. A flavonol O-
methyltransferase from Catharanthus roseus performing two sequential methylations.
Phytochemistry 2003;62:127-137.
101. Dethier M, de Luca V. Partial purification of an N-methyltransferase involved in
vindoline biosynthesis in Catharanthus roseus. Phytochemistry 1993;32:673-678.
102. Vazquez-Flota F, de Carolis E, Alarco A, de Luca V. Molecular cloning and
characterization of desacetoxyvindoline-4-hydroxylase, a 2-oxoglutarate dependent-
dioxygenase involved in the biosynthesis of vindoline in Catharanthus roseus (L.)
G. Don.. Plant Mol. Biol. 1997;34:935-948.
103. St. Pierre B, Laflamme P, Alarco A, de Luca V. The terminal O-acetyltransferase
involved in vindoline biosynthesis defines a new class of proteins responsible for
coenzyme A-dependent acyl transfer. Plant J. 1998;14:703-713.
104. de Luca V, St. Pierre B. The cell and developmental biology of alkaloid biosynthesis.
Trends Plant Sci. 2000;5:168-173.
105. McKnight TD, Bergey DR, Burnett RJ, Nessler C. Expression of enzymatically
active and correctly targeted strictosidine synthase in transgeneic tobacco plants.
Planta 1991;185:148-152.
106. Stevens LH, Blom TJM, Verpoorte R. Subcellular localization of tryptophan decar-
boxylase, strictosidine synthase and strictosidine glucosidase in suspension cul-
tured cells of Catharanthus roseus and Tabernamontana divaricata. Plant Cell Rep.
1993;12:573-576.
107. de Luca V, Cutler AJ. Subcellular localization of enzymes involved in indole alkaloid
biosynthesis in Catharanthus roseus. Plant Physiol. 1987;85:1099-1102.
108. de Carolis E, Chan F, Balsevich J, de Luca V. Isolation and characterization of a
2-oxoglutarate dependent dioxygenase involved in the second to last step in vindoline
biosynthesis. Plant Physiol. 1990;94:1323-1329.
109. Burlat V, Oudin A, Courtois M, Rideau M, St. Pierre B. Coexpression of three
MEP pathway genes and geraniol 10 hydroxylase in internal phloem parenchyma of
Catharanthus roseus implicates multicellular translocation of intermediates during
the biosynthesis of monoterpene indole alkaloids and isoprenoid derived primary
metabolites. Plant J. 2004;38:131-141.
 
Search WWH ::




Custom Search