The field of bacterial natural product research is currently undergoing a paradigm change concerning the discovery of natural products. Previously most efforts were based on isolation of the most abundant compound in an extract, or on tracking bioactivity. However, traditional activity-guided approaches are limited by the available test panels and frequently lead to the rediscovery of already known compounds. The constantly increasing availability of bacterial genome sequences provides the potential for the discovery of a huge number of new natural compounds by in silico identification of biosynthetic gene clusters. Examination of the information on the biosynthetic machinery can further prevent rediscovery of known compounds, and can help ...
Natural products from microbes have provided humans with beneficial antibiotics for millennia. Howev...
International audienceVarious bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptide...
Various bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptides or other small molec...
Abstract The discovery of novel bioactive compounds produced by microorganisms holds significant pot...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
AbstractBackground: Myxobacteria have been well established as a potent source for natural products ...
SummaryGenome sequencing has revealed that bacteria contain many more biosynthetic gene clusters tha...
Bioinformatics analyses have identified gene clusters encoding cryptic polyketide biosynthetic pathw...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Natural products remain a valuable source of drug leads in the 21st Century. Revival of actinomycete...
Natural products from microbes have provided humans with beneficial antibiotics for millennia. Howev...
Bacterial genomes encode numerous cryptic biosynthetic gene clusters (BGCs) that represent a largely...
Natural products from microbes have provided humans with beneficial antibiotics for millennia. Howev...
International audienceVarious bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptide...
Various bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptides or other small molec...
Abstract The discovery of novel bioactive compounds produced by microorganisms holds significant pot...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
Microorganisms produce a wide range of natural products (NPs) with clinically and agriculturally rel...
AbstractBackground: Myxobacteria have been well established as a potent source for natural products ...
SummaryGenome sequencing has revealed that bacteria contain many more biosynthetic gene clusters tha...
Bioinformatics analyses have identified gene clusters encoding cryptic polyketide biosynthetic pathw...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Genome sequencing has revealed that bacteria contain many more biosynthetic gene clusters than predi...
Natural products remain a valuable source of drug leads in the 21st Century. Revival of actinomycete...
Natural products from microbes have provided humans with beneficial antibiotics for millennia. Howev...
Bacterial genomes encode numerous cryptic biosynthetic gene clusters (BGCs) that represent a largely...
Natural products from microbes have provided humans with beneficial antibiotics for millennia. Howev...
International audienceVarious bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptide...
Various bacteria use non-ribosomal peptide synthesis (NRPS) to produce peptides or other small molec...