Microbial production of fuels and commodity chemicals has been performed primarily using natural or slightly modified enzymes, which inherently limits the types of molecules that can be produced. Type I modular polyketide synthases (PKSs) are multi-domain enzymes that can produce unique and diverse molecular structures by combining particular types of catalytic domains in a specific order. This catalytic mechanism offers a wealth of engineering opportunities. Here we report engineered microbes that produce various short-chain (C5-C7) ketones using hybrid PKSs. Introduction of the genes into the chromosome of Streptomyces albus enables it to produce >1 g · l of C6 and C7 ethyl ketones and several hundred mg · l of C5 and C6 methyl ketones fr...
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...
As climate change has become one of the major global risks, our heavy dependence on petroleum-derive...
Microbial production of fuels and commodity chemicals has been performed primarily using natural or ...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Petroleum and its derivatives revolutionized every aspect of human life, from how we work and travel...
Traditionally engineered to produce novel bioactive molecules, Type I modular polyketide synthases (...
Limited reserves of oil and natural gas and the establishment of new environmental policies sparked ...
Engineered modular polyketide synthases (PKSs) have the potential to be an extraordinarily effective...
Polyketide synthases (PKSs) are one of the most profound biosynthetic factories for producing polyke...
Advancement in metabolic engineering of microorganisms has enabled bio-based production of a range o...
The limited supply of fossil fuels and the establishment of new environmental policies shifted resea...
The limited amount of fossil fuels shifted research in industry and academia towards sustainable pro...
Polyketides are important bioactive natural products biosynthesized by bacteria, fungi, and plants. ...
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...
As climate change has become one of the major global risks, our heavy dependence on petroleum-derive...
Microbial production of fuels and commodity chemicals has been performed primarily using natural or ...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Complex polyketides comprise a large number of natural products that have broad application in medic...
Petroleum and its derivatives revolutionized every aspect of human life, from how we work and travel...
Traditionally engineered to produce novel bioactive molecules, Type I modular polyketide synthases (...
Limited reserves of oil and natural gas and the establishment of new environmental policies sparked ...
Engineered modular polyketide synthases (PKSs) have the potential to be an extraordinarily effective...
Polyketide synthases (PKSs) are one of the most profound biosynthetic factories for producing polyke...
Advancement in metabolic engineering of microorganisms has enabled bio-based production of a range o...
The limited supply of fossil fuels and the establishment of new environmental policies shifted resea...
The limited amount of fossil fuels shifted research in industry and academia towards sustainable pro...
Polyketides are important bioactive natural products biosynthesized by bacteria, fungi, and plants. ...
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...
As climate change has become one of the major global risks, our heavy dependence on petroleum-derive...