SummaryThe core structure of the iridoid monoterpenes is formed by a unique cyclization reaction. The enzyme that catalyzes this reaction, iridoid synthase, is mechanistically distinct from other terpene cyclases. Here we describe the synthesis of two substrate analogs to probe the mechanism of iridoid synthase. Enzymatic assay of these substrate analogs along with clues from the product profile of the native substrate strongly suggest that iridoid synthase utilizes a Michael reaction to achieve cyclization. This improved mechanistic understanding will facilitate the exploitation of the potential of iridoid synthase to synthesize new cyclic compounds from nonnatural substrates
Monoterpene indole alkaloids (MIAs) represent a structurally diverse, medicinally essential class of...
Taxadiene synthase catalyzes the formation of taxadiene from GGPP, the universal building block of d...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
The core structure of the iridoid monoterpenes is formed by a unique cyclization reaction. The enzym...
SummaryThe core structure of the iridoid monoterpenes is formed by a unique cyclization reaction. Th...
The iridoids comprise a large family of distinctive bicyclic monoterpenes that possess a wide range ...
The carbon skeleton of ecologically and pharmacologically important iridoid monoterpenes is formed i...
The natural product class of iridoids, found in various species of flowering plants, harbors astonis...
Iridoids represent a large group of monoterpenoid compounds that apparently seem to be formed in pla...
Sesquiterpene cyclases are Mg2+ (or Mn2+) dependent enzymes that catalyze the cyclization of the uni...
Base treatment of 10-oxocitral gives chrysomelidial and dehydroiridodial, supporting its intermediac...
Terpene synthases typically form complex molecular scaffolds by concerted activation and cyclization...
Petromindole (1) is an unusual indole diterpene that bears a triterpene-like carbon skeleton, sugges...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
The drastic growth of the population on our planet requires the efficient and sustainable use of our...
Monoterpene indole alkaloids (MIAs) represent a structurally diverse, medicinally essential class of...
Taxadiene synthase catalyzes the formation of taxadiene from GGPP, the universal building block of d...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
The core structure of the iridoid monoterpenes is formed by a unique cyclization reaction. The enzym...
SummaryThe core structure of the iridoid monoterpenes is formed by a unique cyclization reaction. Th...
The iridoids comprise a large family of distinctive bicyclic monoterpenes that possess a wide range ...
The carbon skeleton of ecologically and pharmacologically important iridoid monoterpenes is formed i...
The natural product class of iridoids, found in various species of flowering plants, harbors astonis...
Iridoids represent a large group of monoterpenoid compounds that apparently seem to be formed in pla...
Sesquiterpene cyclases are Mg2+ (or Mn2+) dependent enzymes that catalyze the cyclization of the uni...
Base treatment of 10-oxocitral gives chrysomelidial and dehydroiridodial, supporting its intermediac...
Terpene synthases typically form complex molecular scaffolds by concerted activation and cyclization...
Petromindole (1) is an unusual indole diterpene that bears a triterpene-like carbon skeleton, sugges...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
The drastic growth of the population on our planet requires the efficient and sustainable use of our...
Monoterpene indole alkaloids (MIAs) represent a structurally diverse, medicinally essential class of...
Taxadiene synthase catalyzes the formation of taxadiene from GGPP, the universal building block of d...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...