Synthetic biology efforts for the production of valuable chemicals are frequently hindered by the structure and regulation of the native metabolic pathways of the chassis. This is particularly evident in the case of monoterpenoid production in Saccharomyces cerevisiae, where the canonical terpene precursor geranyl diphosphate is tightly coupled to the biosynthesis of isoprenoid compounds essential for yeast viability. Here, we establish a synthetic orthogonal monoterpenoid pathway based on an alternative precursor, neryl diphosphate. We identify structural determinants of isomeric substrate selectivity in monoterpene synthases and engineer five different enzymes to accept the alternative substrate with improved efficiency and specificity. W...
The yeast Saccharomyces cerevisiae possesses the endogenous precursor for diterpene production but d...
Sesquiterpenes belong to the large and diverse group of isoprenoids, which are ubiquitous in the pla...
Terpenoids are one of the largest and most diverse families of natural compounds. They are heavily ...
Limonene, a plant-derived natural cyclic monoterpene, is widely used in the pharmaceutical, food, an...
Isoprenoids (terpenes/terpenoids) have many useful industrial applications, but are often not produc...
Isoprenoids are used in many commercial applications and much work has gone into engineering microbi...
Isoprenoid compounds are biologically ubiquitous, and their characteristic modularity has afforded p...
Isoprenoids represent a wide group of chemically active compounds that can find a wide range of appl...
Many synthetic biology approaches aim at expanding the product diversity of enzymes or whole biosynt...
Microbial production can be advantageous over the extraction of phytoterpenoids from natural plant s...
The ability to transfer metabolic pathways from the natural producer organisms to the well-character...
Terpenes are one of the largest groups of natural products. Sesquiterpenes (15-carbon terpenes) are ...
<p>A simplified metabolic network of yeast depicting most important reactions is shown. Production o...
Nature has developed two chemical strategies for the cyclization step in isoprenoid production. In o...
Many high-value metabolites are produced in nature by organisms that are not ideal for large-scale p...
The yeast Saccharomyces cerevisiae possesses the endogenous precursor for diterpene production but d...
Sesquiterpenes belong to the large and diverse group of isoprenoids, which are ubiquitous in the pla...
Terpenoids are one of the largest and most diverse families of natural compounds. They are heavily ...
Limonene, a plant-derived natural cyclic monoterpene, is widely used in the pharmaceutical, food, an...
Isoprenoids (terpenes/terpenoids) have many useful industrial applications, but are often not produc...
Isoprenoids are used in many commercial applications and much work has gone into engineering microbi...
Isoprenoid compounds are biologically ubiquitous, and their characteristic modularity has afforded p...
Isoprenoids represent a wide group of chemically active compounds that can find a wide range of appl...
Many synthetic biology approaches aim at expanding the product diversity of enzymes or whole biosynt...
Microbial production can be advantageous over the extraction of phytoterpenoids from natural plant s...
The ability to transfer metabolic pathways from the natural producer organisms to the well-character...
Terpenes are one of the largest groups of natural products. Sesquiterpenes (15-carbon terpenes) are ...
<p>A simplified metabolic network of yeast depicting most important reactions is shown. Production o...
Nature has developed two chemical strategies for the cyclization step in isoprenoid production. In o...
Many high-value metabolites are produced in nature by organisms that are not ideal for large-scale p...
The yeast Saccharomyces cerevisiae possesses the endogenous precursor for diterpene production but d...
Sesquiterpenes belong to the large and diverse group of isoprenoids, which are ubiquitous in the pla...
Terpenoids are one of the largest and most diverse families of natural compounds. They are heavily ...