Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domains of life. In specialized metabolism, the active sites of terpene synthases (TPSs) evolve in shape and reactivity to direct the biosynthesis of a myriad of chemotypes for organismal fitness. As most terpene biosynthesis mechanistically involves highly reactive carbocationic intermediates, the protein surfaces catalyzing these cascade reactions possess reactive regions possibly prone to premature carbocation capture and potentially enzyme inactivation. Here, we show using proteomic and X-ray crystallographic analyses that cationic intermediates undergo capture by conserved active site residues leading to inhibitory self-alkylation. Moreover, ...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpenoids comprise tens of thousands of small molecule natural products that are widely distributed...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
ABSTRACT: Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all t...
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...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpene synthases catalyze complex reactions, often forming multiple chiral centers in cyclized olef...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpenoids comprise tens of thousands of small molecule natural products that are widely distributed...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all three domai...
ABSTRACT: Terpenes are ubiquitous natural chemicals with diverse biological functions spanning all t...
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...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpenes constitute the largest and structurally most diverse natural product family. Most terpenoid...
Terpene synthases catalyze complex reactions, often forming multiple chiral centers in cyclized olef...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpenoids comprise tens of thousands of small molecule natural products that are widely distributed...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...