Two homologous gene clusters for the biosynthesis of sesterterpenes betaestacins were identified from two phytopathogens, Phoma betae and Colletotrichum orbiculare. Heterologous expression of identified oxidation enzymes with previously-characterized PbTS1 (BtcA(pb)) resulted in the production of seven novel sesterterpenes. Although both strains possessed homologous enzymes, oxidation state of corresponding products were different from each other, suggesting that structural diversification of sesterterpene skeletons might be achieved by these homologous enzymes with different functions. (C) 2013 Elsevier Ltd. All rights reserved
AbstractFungal natural products possess biological activities that are of great value to medicine, a...
During a screening of putative diterpene synthase genes found in public databases using the <i>Asper...
BackgroundTerpenes represent one of the largest and most diversified families of natural compounds a...
Two homologous gene clusters for the biosynthesis of sesterterpenes betaestacins were identified fro...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
Genome mining is a promising method to discover novel secondary metabolites in the postgenomic era. ...
Sesterterpenoids are a rare terpene class harboring untapped chemodiversity and bioactivities. Their...
Natural product biosynthesis is heavily influenced by external stimuli; therefore, at any given time...
The search for a new sesterterpene synthase in the genome of <i>Emericella variecolor</i>, which rep...
Terpenoids, the largest and most structurally and functionally diverse class of natural compounds on...
Fungal secondary metabolites are a rich source of medically useful compounds due to their pharmaceut...
Plant specialised metabolites are highly diverse in their functions and chemistries. The discovery o...
Land plants co-speciate with a diversity of continually expanding plant specialized metabolites (PSM...
<p>Fungal natural products possess biological activities that are of great value to medicine, agricu...
Genomics-guided methodologies have been widely adopted and proven beneficial for the discovery of na...
AbstractFungal natural products possess biological activities that are of great value to medicine, a...
During a screening of putative diterpene synthase genes found in public databases using the <i>Asper...
BackgroundTerpenes represent one of the largest and most diversified families of natural compounds a...
Two homologous gene clusters for the biosynthesis of sesterterpenes betaestacins were identified fro...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
Genome mining is a promising method to discover novel secondary metabolites in the postgenomic era. ...
Sesterterpenoids are a rare terpene class harboring untapped chemodiversity and bioactivities. Their...
Natural product biosynthesis is heavily influenced by external stimuli; therefore, at any given time...
The search for a new sesterterpene synthase in the genome of <i>Emericella variecolor</i>, which rep...
Terpenoids, the largest and most structurally and functionally diverse class of natural compounds on...
Fungal secondary metabolites are a rich source of medically useful compounds due to their pharmaceut...
Plant specialised metabolites are highly diverse in their functions and chemistries. The discovery o...
Land plants co-speciate with a diversity of continually expanding plant specialized metabolites (PSM...
<p>Fungal natural products possess biological activities that are of great value to medicine, agricu...
Genomics-guided methodologies have been widely adopted and proven beneficial for the discovery of na...
AbstractFungal natural products possess biological activities that are of great value to medicine, a...
During a screening of putative diterpene synthase genes found in public databases using the <i>Asper...
BackgroundTerpenes represent one of the largest and most diversified families of natural compounds a...