Strictosidine glucosidase (SGD) from Catharanthus roseus catalyzes the deglycosylation of strictosidine, an intermediate from which thousands of monoterpene indole alkaloids are derived. The steady-state kinetics of SGD with a variety of strictosidine analogs revealed the substrate preferences of this enzyme at two key positions of the strictosidine substrate. Additionally, SGD from C. roseus turns over both strictosidine and its stereoisomer vincoside, indicating that although this enzyme prefers the naturally occurring diastereomer, the enzyme is not completely diastereoselective. The implications of the substrate specificity of SGD in metabolic engineering efforts of C. roseus are highlighte
The enzyme strictosidine synthase (STR1) from the Indian medicinal plant Rauvolfia serpentina is of ...
Monoterpene indole alkaloids from Catharanthus roseus (Madagascar periwinkle), such as the anticance...
Two similar enzymes with different biosynthetic function in one species have evolved to catalyze two...
Strictosidine β-d-glucosidase (SG) follows strictosidine synthase (STR1) in the production of the re...
SummaryThe highly substrate-specific strictosidine synthase (EC 4.3.3.2) catalyzes the biological Pi...
Strictosidine synthase catalyzes a Pictet-Spengler reaction in the first step in the biosynthesis of...
Strictosidine synthase (STR; EC 4.3.3.2) plays a key role in the biosynthesis of monoterpenoid indol...
The chemical diversity found in plants has served as a major source of inspiration to many synthetic...
Plant alkaloids exhibit a diverse array of structures and pharmaceutical activities, though metaboli...
<p>The key intermediate strictosidine is formed by condensation of tryptamine, which contributes the...
SummaryThe extraordinary chemical diversity of the plant-derived monoterpene indole alkaloids, which...
The extraordinary chemical diversity of the plant-derived monoterpene indole alkaloids, which includ...
Monoterpene indole alkaloids, a large class of plant natural products, derive from the biosynthetic ...
SummaryPlant alkaloids exhibit a diverse array of structures and pharmaceutical activities, though m...
Recently we reported that strictosidine (l> is the key intermediate in the formation of the three...
The enzyme strictosidine synthase (STR1) from the Indian medicinal plant Rauvolfia serpentina is of ...
Monoterpene indole alkaloids from Catharanthus roseus (Madagascar periwinkle), such as the anticance...
Two similar enzymes with different biosynthetic function in one species have evolved to catalyze two...
Strictosidine β-d-glucosidase (SG) follows strictosidine synthase (STR1) in the production of the re...
SummaryThe highly substrate-specific strictosidine synthase (EC 4.3.3.2) catalyzes the biological Pi...
Strictosidine synthase catalyzes a Pictet-Spengler reaction in the first step in the biosynthesis of...
Strictosidine synthase (STR; EC 4.3.3.2) plays a key role in the biosynthesis of monoterpenoid indol...
The chemical diversity found in plants has served as a major source of inspiration to many synthetic...
Plant alkaloids exhibit a diverse array of structures and pharmaceutical activities, though metaboli...
<p>The key intermediate strictosidine is formed by condensation of tryptamine, which contributes the...
SummaryThe extraordinary chemical diversity of the plant-derived monoterpene indole alkaloids, which...
The extraordinary chemical diversity of the plant-derived monoterpene indole alkaloids, which includ...
Monoterpene indole alkaloids, a large class of plant natural products, derive from the biosynthetic ...
SummaryPlant alkaloids exhibit a diverse array of structures and pharmaceutical activities, though m...
Recently we reported that strictosidine (l> is the key intermediate in the formation of the three...
The enzyme strictosidine synthase (STR1) from the Indian medicinal plant Rauvolfia serpentina is of ...
Monoterpene indole alkaloids from Catharanthus roseus (Madagascar periwinkle), such as the anticance...
Two similar enzymes with different biosynthetic function in one species have evolved to catalyze two...