While cyclic ether forming terpene synthases are known, the basis for such heterocyclisation is unclear. Here it is reported that numerous (di)terpene synthases, particularly including the ancestral ent-kaurene synthase, efficiently produce isomers of manoyl oxide from the stereochemically appropriate substrate. Accordingly, such heterocyclisation is easily accomplished by terpene synthases. Indeed, the use of single residue changes to induce production of the appropriate substrate in the upstream active site leads to efficient bifunctional enzymes producing isomers of manoyl oxide, representing novel enzymatic activity
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpene synthases often catalyze complex cyclization reactions that typically represent the committe...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
While cyclic ether forming terpene synthases are known, the basis for such heterocyclisation is uncl...
Terpene synthases often catalyze complex carbocation cascade reactions. It has been previously shown...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases are capable of mediating complex reactions, but fundamentally simply catalyze lysi...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Covering: literature up to 2018Terpenes are a class of natural products characterized by remarkable ...
Diterpenes are widely distributed across many biological kingdoms, where they serve a diverse range ...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Class II diterpene cyclases catalyze bicyclization of geranylgeranyl diphosphate. While this reactio...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Terpene synthases catalyse the first step in the conversion of prenyl diphosphates to terpenoids. Th...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpene synthases often catalyze complex cyclization reactions that typically represent the committe...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
While cyclic ether forming terpene synthases are known, the basis for such heterocyclisation is uncl...
Terpene synthases often catalyze complex carbocation cascade reactions. It has been previously shown...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases are capable of mediating complex reactions, but fundamentally simply catalyze lysi...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Covering: literature up to 2018Terpenes are a class of natural products characterized by remarkable ...
Diterpenes are widely distributed across many biological kingdoms, where they serve a diverse range ...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Class II diterpene cyclases catalyze bicyclization of geranylgeranyl diphosphate. While this reactio...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Terpene synthases catalyse the first step in the conversion of prenyl diphosphates to terpenoids. Th...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpene synthases often catalyze complex cyclization reactions that typically represent the committe...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...