AbstractMulti-enzyme systems such as those involved in the biosynthesis of polyketides, typically catalyze several distinct reactions that are combined in different ways to generate diverse natural products. The variability available in such systems has not been fully harnessed from nature. It may therefore be possible to create ‘unnatural’ natural products, which may be as structurally diverse and medicinally valuable as existing natural products, using combinatorial biosynthesis
Metabolic engineering efforts toward rewiring metabolism of cells to produce new compounds often req...
Combinatorial biosynthesis aspires to exploit the promiscuity of microbial anabolic pathways to engi...
Modular polyketide synthases and nonribosomal peptide synthetases are giant multienzymes that cataly...
AbstractMulti-enzyme systems such as those involved in the biosynthesis of polyketides, typically ca...
Huihua Sun,1,* Zihe Liu,1,* Huimin Zhao,1,2 Ee Lui Ang1 1Metabolic Engineering Research Laboratory,...
Natural products continue to inspire scientists on the search for biological active structures. Rece...
sem informação4217183Natural products continue to inspire scientists on the search for biological ac...
Modular polyketide synthases (PKS) of bacteria provide an amazing molecular assembly line for the bi...
A very important task in the ongoing search for new clinically useful drugs is the generation of lar...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Many clinically used drugs are derived from secondary metabolites that are biosynthesized in a modul...
Natural products have a long history of success as biologically active leads for therapeutic agents....
Natural products continue to inspire scientists on the search for biological active structures. Rece...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Metabolic engineering efforts toward rewiring metabolism of cells to produce new compounds often req...
Combinatorial biosynthesis aspires to exploit the promiscuity of microbial anabolic pathways to engi...
Modular polyketide synthases and nonribosomal peptide synthetases are giant multienzymes that cataly...
AbstractMulti-enzyme systems such as those involved in the biosynthesis of polyketides, typically ca...
Huihua Sun,1,* Zihe Liu,1,* Huimin Zhao,1,2 Ee Lui Ang1 1Metabolic Engineering Research Laboratory,...
Natural products continue to inspire scientists on the search for biological active structures. Rece...
sem informação4217183Natural products continue to inspire scientists on the search for biological ac...
Modular polyketide synthases (PKS) of bacteria provide an amazing molecular assembly line for the bi...
A very important task in the ongoing search for new clinically useful drugs is the generation of lar...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Many clinically used drugs are derived from secondary metabolites that are biosynthesized in a modul...
Natural products have a long history of success as biologically active leads for therapeutic agents....
Natural products continue to inspire scientists on the search for biological active structures. Rece...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Two disparate polyketide families, the benzenediol lactones and the azaphilones, are produced by fun...
Metabolic engineering efforts toward rewiring metabolism of cells to produce new compounds often req...
Combinatorial biosynthesis aspires to exploit the promiscuity of microbial anabolic pathways to engi...
Modular polyketide synthases and nonribosomal peptide synthetases are giant multienzymes that cataly...