Sesquiterpene skeletal complexity in nature originates from the enzyme-catalyzed ionization of (<i>trans</i>,<i>trans</i>)-farnesyl diphosphate (FPP) (<b>1a</b>) and subsequent cyclization along either 2,3-transoid or 2,3-cisoid farnesyl cation pathways. Tobacco 5-epi-aristolochene synthase (TEAS), a transoid synthase, produces cisoid products as a component of its minor product spectrum. To investigate the cryptic cisoid cyclization pathway in TEAS, we employed (<i>cis</i>,<i>trans</i>)-FPP (<b>1b</b>) as an alternative substrate. Strikingly, TEAS was catalytically robust in the enzymatic conversion of (<i>cis</i>,<i>trans</i>)-FPP (<b>1b</b>) to exclusively (≥99.5%) cisoid products. Further, crystallographic characterization of wild-type ...
Terpenoids represent the most structurally and stereochemically diverse family of natural products w...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Recombinant (+)-δ-cadinene synthase (DCS) from Gossypium arboreum catalyzes the metal-dependent cycl...
Sesquiterpene skeletal complexity in nature originates from the enzyme-catalyzed ionization of (tran...
We report the structures and stereochemistry of seven bisabolyl-derived sesquiterpenes arising from ...
T erpenes comprise the most structurally diverseclass of natural products, playing essential eco-log...
Tobacco 5-epi-aristolochene synthase (TEAS) catalyzes the MgII-dependent cyclizations and rearrangem...
Promiscuity of terpene synthases results in the enormous diversity of terpenes found in nature. Mult...
Terpenes are one of the largest groups of plant secondary metabolites that are utilized for a multit...
Promiscuity of terpene synthases results in the enormous diversity of terpenes found in nature. Mult...
Plant sesquiterpene synthases catalyze the conversion of the linear substrate farnesyl diphosphate, ...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
Sesquiterpene cyclases are Mg2+ (or Mn2+) dependent enzymes that catalyze the cyclization of the uni...
trans,trans-Farnesyl diphosphate (FPP) serves as a universal substrate for a large family of sesquit...
Biosynthesis of the labdane-related diterpenoids, a large superfamily of over 7,000 natural products...
Terpenoids represent the most structurally and stereochemically diverse family of natural products w...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Recombinant (+)-δ-cadinene synthase (DCS) from Gossypium arboreum catalyzes the metal-dependent cycl...
Sesquiterpene skeletal complexity in nature originates from the enzyme-catalyzed ionization of (tran...
We report the structures and stereochemistry of seven bisabolyl-derived sesquiterpenes arising from ...
T erpenes comprise the most structurally diverseclass of natural products, playing essential eco-log...
Tobacco 5-epi-aristolochene synthase (TEAS) catalyzes the MgII-dependent cyclizations and rearrangem...
Promiscuity of terpene synthases results in the enormous diversity of terpenes found in nature. Mult...
Terpenes are one of the largest groups of plant secondary metabolites that are utilized for a multit...
Promiscuity of terpene synthases results in the enormous diversity of terpenes found in nature. Mult...
Plant sesquiterpene synthases catalyze the conversion of the linear substrate farnesyl diphosphate, ...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
Sesquiterpene cyclases are Mg2+ (or Mn2+) dependent enzymes that catalyze the cyclization of the uni...
trans,trans-Farnesyl diphosphate (FPP) serves as a universal substrate for a large family of sesquit...
Biosynthesis of the labdane-related diterpenoids, a large superfamily of over 7,000 natural products...
Terpenoids represent the most structurally and stereochemically diverse family of natural products w...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Recombinant (+)-δ-cadinene synthase (DCS) from Gossypium arboreum catalyzes the metal-dependent cycl...