The traditional natural product discovery approach has accessed only a fraction of the chemical diversity in nature. The use of bioinformatic tools to interpret the instructions encoded in microbial biosynthetic genes has the potential to circumvent the existing methodological bottlenecks and greatly expand the scope of discovery. Structural prediction algorithms for nonribosomal peptides (NRPs), the largest family of microbial natural products, lie at the heart of this new approach. To understand the scope and limitation of the existing prediction algorithms, we evaluated their performances on NRP synthetase biosynthetic gene clusters. Our systematic analysis shows that the NRP biosynthetic landscape is uneven. Phenylglycine and its deriva...
Harnessing the modular architecture of non-ribosomal peptide synthetases for combinatorial biosynthe...
Fungi are notoriously prolific producers of secondary metabolites including nonribosomal peptides (N...
Today, as the world is stricken by the proliferation of novel infectious pathogens, we are faced wit...
The traditional natural product discovery approach has accessed only a fraction of the chemical dive...
iii Nonribosomal peptides (NRPs) are a major class of natural products known for their biological ac...
International audienceThis chapter helps in the use of bioinformatics tools relevant to the discover...
Nonribosomal peptides are an important class of natural products including the life-saving antibioti...
SummaryMicrobial natural products are some of the most important pharmaceutical agents and possess u...
The development of new classes of antibiotics for clinical use is of great importance due to the eve...
Natural product discovery is in the midst of a transition from a largely serendipity-based effort to...
International audienceNonRibosomal peptides (NRPs) are a huge untapped resource of natural products ...
Abstract A large number of therapeutically useful cyclic and linear peptides of bacteria or fungal o...
Nonribosomal peptides (NRPs) are molecules produced by microorganisms that have a broad spectrum of ...
Peptides are synthesized in bacteria or fungi not only through the classical pathway from the transc...
AbstractPeptide natural products continue to play an important role in modern medicine as last-resor...
Harnessing the modular architecture of non-ribosomal peptide synthetases for combinatorial biosynthe...
Fungi are notoriously prolific producers of secondary metabolites including nonribosomal peptides (N...
Today, as the world is stricken by the proliferation of novel infectious pathogens, we are faced wit...
The traditional natural product discovery approach has accessed only a fraction of the chemical dive...
iii Nonribosomal peptides (NRPs) are a major class of natural products known for their biological ac...
International audienceThis chapter helps in the use of bioinformatics tools relevant to the discover...
Nonribosomal peptides are an important class of natural products including the life-saving antibioti...
SummaryMicrobial natural products are some of the most important pharmaceutical agents and possess u...
The development of new classes of antibiotics for clinical use is of great importance due to the eve...
Natural product discovery is in the midst of a transition from a largely serendipity-based effort to...
International audienceNonRibosomal peptides (NRPs) are a huge untapped resource of natural products ...
Abstract A large number of therapeutically useful cyclic and linear peptides of bacteria or fungal o...
Nonribosomal peptides (NRPs) are molecules produced by microorganisms that have a broad spectrum of ...
Peptides are synthesized in bacteria or fungi not only through the classical pathway from the transc...
AbstractPeptide natural products continue to play an important role in modern medicine as last-resor...
Harnessing the modular architecture of non-ribosomal peptide synthetases for combinatorial biosynthe...
Fungi are notoriously prolific producers of secondary metabolites including nonribosomal peptides (N...
Today, as the world is stricken by the proliferation of novel infectious pathogens, we are faced wit...