Presilphiperfolanols constitute a family of biosynthetically important sesquiterpenes which can rearrange to diverse sesquiterpenoid skeletons. While the origin of these natural products can be traced to simple linear terpene precursors, the details of the enzymatic cyclization mechanism that forms the stereochemically dense tricyclic skeleton has required extensive biochemical, computational, and synthetic investigation. Parallel efforts to prepare the unique and intriguing structures of these compounds by total synthesis have also inspired novel strategies, thus resulting in four synthetic approaches and two completed syntheses. While the biosynthesis and chemical synthesis studies performed to date have provided much insight into the rol...
Biologically active and structurally complex natural products provide a powerful driving force for t...
Terpenoid natural products are generally derived from isoprenyl diphosphate precursors with trans do...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Presilphiperfolanols constitute a family of biosynthetically important sesquiterpenes which can rear...
The first total synthesis of the reported structures of 9-epi-presilphiperfolan-1-ol and presilphipe...
Recent developments in selected sesquiterpenoids are reviewed for the past one decade (2005–2017) wi...
Acid-catalyzed rearrangement of presilphiperfolanol to silphiperfol-6-ene and $\alpha$-terrecyclene ...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
The first enantioselective total synthesis of the complex tricarbocyclic sesquiterpenoid periconiano...
The triterpene alcohols represent an important and diverse class of natural products. This diversity...
Plant sesquiterpene synthases catalyze the conversion of the linear substrate farnesyl diphosphate, ...
Terpenes represent the largest and structurally most diverse group of natural products. Since ancien...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Sesterterpenoids account for many bioactive natural products, often with unusual and complex structu...
AbstractIsoprenoids comprise a family of more than 23,000 natural products, among them the precursor...
Biologically active and structurally complex natural products provide a powerful driving force for t...
Terpenoid natural products are generally derived from isoprenyl diphosphate precursors with trans do...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...
Presilphiperfolanols constitute a family of biosynthetically important sesquiterpenes which can rear...
The first total synthesis of the reported structures of 9-epi-presilphiperfolan-1-ol and presilphipe...
Recent developments in selected sesquiterpenoids are reviewed for the past one decade (2005–2017) wi...
Acid-catalyzed rearrangement of presilphiperfolanol to silphiperfol-6-ene and $\alpha$-terrecyclene ...
The complexity of terpenoid natural products has drawn significant interest, particularly since thei...
The first enantioselective total synthesis of the complex tricarbocyclic sesquiterpenoid periconiano...
The triterpene alcohols represent an important and diverse class of natural products. This diversity...
Plant sesquiterpene synthases catalyze the conversion of the linear substrate farnesyl diphosphate, ...
Terpenes represent the largest and structurally most diverse group of natural products. Since ancien...
Terpenoids have a wide range of applications in the pharmaceutical, agrochemical, perfume, pigment a...
Sesterterpenoids account for many bioactive natural products, often with unusual and complex structu...
AbstractIsoprenoids comprise a family of more than 23,000 natural products, among them the precursor...
Biologically active and structurally complex natural products provide a powerful driving force for t...
Terpenoid natural products are generally derived from isoprenyl diphosphate precursors with trans do...
Terpene synthases/cyclases yield core structures of some of the most valuable bioactive molecules, s...