Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fungi using iterative polyketide synthase (iPKS) enzymes consisting of collaborating partner subunits. Exploitation of this common biosynthetic logic using iPKS subunit shuffling allowed the diversity-oriented combinatorial biosynthesis of unprecedented polyketide scaffolds new to nature, bearing structural motifs from both of these orthogonal natural product families. Starter unit acyltransferase domain replacements proved necessary but not sufficient to guarantee communication between iPKS subunits
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
Polyketides are a diverse class of molecules which are biosynthesized in many different organisms, s...
ABSTRACT: A facile genetic methodology in the filamentous fungus Aspergillus nidulans allowed exchan...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Combinatorial biosynthesis aspires to exploit the promiscuity of microbial anabolic pathways to engi...
Natural products continue to inspire scientists on the search for biological active structures. Rece...
Modular collaboration between iterative fungal polyketide synthases (IPKSs) is an important mechanis...
sem informação4217183Natural products continue to inspire scientists on the search for biological ac...
Combinatorial biosynthesis with fungal polyketide synthases (PKSs) promises to produce unprecedented...
Complex polyketides comprise a large number of natural products that have broad application in medic...
The programming of the fungal polyketide synthase (PKS) is quite complex, with a simple domain archi...
Modular polyketide synthases (PKS) of bacteria provide an amazing molecular assembly line for the bi...
The biosynthesis of fungal highly reduced polyketides was investigated by domainain shuffling, heter...
AbstractMulti-enzyme systems such as those involved in the biosynthesis of polyketides, typically ca...
Saccharomyces cerevisiae has been extensively used as a convenient synthetic biology chassis to reco...
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
Polyketides are a diverse class of molecules which are biosynthesized in many different organisms, s...
ABSTRACT: A facile genetic methodology in the filamentous fungus Aspergillus nidulans allowed exchan...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Combinatorial biosynthesis aspires to exploit the promiscuity of microbial anabolic pathways to engi...
Natural products continue to inspire scientists on the search for biological active structures. Rece...
Modular collaboration between iterative fungal polyketide synthases (IPKSs) is an important mechanis...
sem informação4217183Natural products continue to inspire scientists on the search for biological ac...
Combinatorial biosynthesis with fungal polyketide synthases (PKSs) promises to produce unprecedented...
Complex polyketides comprise a large number of natural products that have broad application in medic...
The programming of the fungal polyketide synthase (PKS) is quite complex, with a simple domain archi...
Modular polyketide synthases (PKS) of bacteria provide an amazing molecular assembly line for the bi...
The biosynthesis of fungal highly reduced polyketides was investigated by domainain shuffling, heter...
AbstractMulti-enzyme systems such as those involved in the biosynthesis of polyketides, typically ca...
Saccharomyces cerevisiae has been extensively used as a convenient synthetic biology chassis to reco...
Modular polyketide synthases (PKSs) of bacteria provide an enormous reservoir of natural chemical di...
Polyketides are a diverse class of molecules which are biosynthesized in many different organisms, s...
ABSTRACT: A facile genetic methodology in the filamentous fungus Aspergillus nidulans allowed exchan...