Terpenes constitute the largest class of natural products and serve as an important source for medicinal treatments. Despite constant progress in chemical synthesis, the construction of complex polycyclic sesqui- and diterpene scaffolds remains challenging. However, natural cyclase enzymes are able to form the whole variety of terpene structures from just a handful of linear precursors. Man-made catalysts able to mimic such natural enzymes are lacking. Here, we describe examples of sesquiterpene cyclizations inside an enzyme-mimicking supramolecular catalyst. This strategy allowed the formation of the tricyclic sesquiterpene isolongifolene in only four steps. The mechanism of the catalysed cyclization reaction was elucidated using 13 C-labe...
Carbocation cyclization cascades catalyzed by terpenoid cyclases rank among the most important and t...
The tail-to-head terpene cyclization is arguably one of the most complex reactions found in nature. ...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
The synthesis of terpene natural products remains a challenging task due to the enormous structural ...
Covering: literature up to 2018Terpenes are a class of natural products characterized by remarkable ...
The tail-to-head terpene cyclization is arguably one of the most complex reactions found in nature. ...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Terpenes represent the largest and structurally most diverse group of natural products. Since ancien...
Natural product total synthesis inspires the development of synthesis strategies to access important...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
Terpenes consist of the most chemically diverse class of natural products and have an incredible sco...
Terpenes represent the largest and the most diverse class of natural compounds. This is remarkable a...
Carbocation cyclization cascades catalyzed by terpenoid cyclases rank among the most important and t...
The tail-to-head terpene cyclization is arguably one of the most complex reactions found in nature. ...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...
The synthesis of terpene natural products remains a challenging task due to the enormous structural ...
Covering: literature up to 2018Terpenes are a class of natural products characterized by remarkable ...
The tail-to-head terpene cyclization is arguably one of the most complex reactions found in nature. ...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
Terpenes represent the largest and structurally most diverse group of natural products. Since ancien...
Natural product total synthesis inspires the development of synthesis strategies to access important...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Terpene cyclase enzymes catalyze the most complex chemical reactions found in nature, forming produc...
Terpenes consist of the most chemically diverse class of natural products and have an incredible sco...
Terpenes represent the largest and the most diverse class of natural compounds. This is remarkable a...
Carbocation cyclization cascades catalyzed by terpenoid cyclases rank among the most important and t...
The tail-to-head terpene cyclization is arguably one of the most complex reactions found in nature. ...
Natural sesquiterpene synthases have evolved to make complex terpenoids by quenching reactive carboc...