Methyl methacrylate (MMA) is an important petrochemical with many applications. However, its manufacture has a large environmental footprint. Combined biological and chemical synthesis (semisynthesis) may be a promising alternative to reduce both cost and environmental impact, but strains that can produce the MMA precursor (citramalate) at low pH are required. A non-conventional yeast, Issatchenkia orientalis, may prove ideal, as it can survive extremely low pH. Here, we demonstrate the engineering of I. orientalis for citramalate production. Using sequence similarity network analysis and subsequent DNA synthesis, we selected a more active citramalate synthase gene (cimA) variant for expression in I. orientalis. We then adapted a piggyBac t...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
Methyl methacrylate (MMA) is an important petrochemical with many applications. However, its manufac...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
Increased demand for petroleum resources coupled with political, environmental and supply-chain conc...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
Microbial production of chemicals and proteins from biomass-derived and waste sugar streams is a rap...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
Methyl methacrylate (MMA) is an important petrochemical with many applications. However, its manufac...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Itaconic acid (IA), or 2-methylenesuccinic acid, has a broad spectrum of applications in the biopoly...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
Increased demand for petroleum resources coupled with political, environmental and supply-chain conc...
ABSTRACT The nonconventional yeast Issatchenkia orientalis has emerged as a potential platform micro...
Microbial production of chemicals and proteins from biomass-derived and waste sugar streams is a rap...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...
The conversion of renewable biomass to industrial chemicals of interest through microbial synthesis ...
The nonconventional yeast Issatchenkia orientalis can grow under highly acidic conditions and has be...
Citramalic acid is a central intermediate in a combined biocatalytic and chemocatalytic route to pro...