Terpene synthases often catalyze complex reactions involving intricate series of carbocation intermediates. The resulting, generally cyclical, structures provide initial hydrocarbon frameworks that underlie the astonishing structural diversity of the enormous class of terpenoid natural products (\u3e50,000 known), and these enzymes often mediate the committed step in their particular biosynthetic pathway. Accordingly, how terpene synthases specify product outcome has drawn a great deal of attention. In previous work, we have shown that mutational introduction of a hydroxyl group at specific positions within diterpene synthase active sites can short circuit complex cyclization and/or rearrangement reactions, resulting in the production of ...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases often catalyze complex cyclization reactions that typically represent the committe...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Biosynthesis of the labdane-related diterpenoids, a large superfamily of over 7,000 natural products...
<p>Diterpene synthases catalyze complex, multi-step C-C coupling reactions thereby converting the un...
Diterpene synthases catalyze complex, multi-step C-C coupling reactions thereby converting the unive...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Terpene synthases often catalyze complex carbocation cascade reactions. It has been previously shown...
Terpenes consist of the most chemically diverse class of natural products and have an incredible sco...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases often catalyze complex reactions involving intricate series of carbocation interme...
Terpene synthases often catalyze complex cyclization reactions that typically represent the committe...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Biosynthesis of the labdane-related diterpenoids, a large superfamily of over 7,000 natural products...
<p>Diterpene synthases catalyze complex, multi-step C-C coupling reactions thereby converting the un...
Diterpene synthases catalyze complex, multi-step C-C coupling reactions thereby converting the unive...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Terpene synthases often catalyze complex carbocation cascade reactions. It has been previously shown...
Terpenes consist of the most chemically diverse class of natural products and have an incredible sco...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...