Modular polyketide synthases catalyze the biosynthesis of medicinally important natural products through an assembly-line mechanism. Although these megasynthases display very precise overall selectivity, we show that their constituent modules are remarkably tolerant toward diverse incoming acyl chains. By appropriate engineering of linkers, which exist within and between polypeptides, it is possible to exploit this tolerance to facilitate the transfer of biosynthetic intermediates between unnaturally linked modules. This protein engineering strategy also provides insights into the evolution of modular polyketide synthases
SummaryUnnatural combinations of polyketide synthase modules often fail to make a polyketide product...
Modular type I polyketide synthases (PKSs) are multifunctional proteins that are comprised of indivi...
Type I modular polyketide synthases (PKSs) catalyze the natural synthesis of some of the most clinic...
Modular polyketide synthases catalyze the biosynthesis of medicinally important natural products thr...
Polyketide synthases catalyze the assembly of complex natural products from simple precursors such a...
AbstractBackground: Modular polyketide synthases catalyse the biosynthesis of medically useful natur...
Metabolic engineering efforts toward rewiring metabolism of cells to produce new compounds often req...
AbstractBackground: Modular polyketide synthases (PKSs) are very large multifunctional enzyme comple...
AbstractBackground: Modular polyketide synthases (PKSs) are large multifunctional proteins that cata...
AbstractNumerous bioactive natural products are synthesised by modular polyketide synthases. These c...
Polyketide natural products such as erythromycin A and epothilone are assembled on multienzyme polyk...
Polyketides are a diverse set of biological molecules that have the potential to revolutionize human...
SummaryType I polyketide synthases (PKSs) consist of modules that add two-carbon units in polyketide...
Modular polyketide synthases and nonribosomal peptide synthetases are giant multienzymes that cataly...
Complex polyketides comprise a large number of natural products that have broad application in medic...
SummaryUnnatural combinations of polyketide synthase modules often fail to make a polyketide product...
Modular type I polyketide synthases (PKSs) are multifunctional proteins that are comprised of indivi...
Type I modular polyketide synthases (PKSs) catalyze the natural synthesis of some of the most clinic...
Modular polyketide synthases catalyze the biosynthesis of medicinally important natural products thr...
Polyketide synthases catalyze the assembly of complex natural products from simple precursors such a...
AbstractBackground: Modular polyketide synthases catalyse the biosynthesis of medically useful natur...
Metabolic engineering efforts toward rewiring metabolism of cells to produce new compounds often req...
AbstractBackground: Modular polyketide synthases (PKSs) are very large multifunctional enzyme comple...
AbstractBackground: Modular polyketide synthases (PKSs) are large multifunctional proteins that cata...
AbstractNumerous bioactive natural products are synthesised by modular polyketide synthases. These c...
Polyketide natural products such as erythromycin A and epothilone are assembled on multienzyme polyk...
Polyketides are a diverse set of biological molecules that have the potential to revolutionize human...
SummaryType I polyketide synthases (PKSs) consist of modules that add two-carbon units in polyketide...
Modular polyketide synthases and nonribosomal peptide synthetases are giant multienzymes that cataly...
Complex polyketides comprise a large number of natural products that have broad application in medic...
SummaryUnnatural combinations of polyketide synthase modules often fail to make a polyketide product...
Modular type I polyketide synthases (PKSs) are multifunctional proteins that are comprised of indivi...
Type I modular polyketide synthases (PKSs) catalyze the natural synthesis of some of the most clinic...