Xylonate is a valuable chemical for versatile applications. Although the chemical synthesis route and microbial conversion pathway were established decades ago, no commercial production of xylonate has been obtained so far. In this study, the industrially important microorganism Escherichia coli was engineered to produce xylonate from xylose. Through the coexpression of a xylose dehydrogenase (xdh) and a xylonolactonase (xylC) from Caulobacter crescentus, the recombinant strain could convert 1 g/L xylose to 0.84 g/L xylonate and 0.10 g/L xylonolactone after being induced for 12 h. Furthermore, the competitive pathway for xylose catabolism in E. coli was blocked by disrupting two genes (xylA and xylB) encoding xylose isomerase and xylulose k...
Before fermentation with hemicellulosic hydrolysate as a substrate, it is generally necessary to det...
BackgroundWe previously developed an E. coli strain that overproduces medium-chain methyl ketones fo...
The solvent-tolerant bacterium Pseudomonas putida S12 was engineered to utilize xylose as a substrat...
Xylonate is a valuable chemical for versatile applications. Although the chemical synthesis route an...
Ethylene glycol (EG) is an important chemical used for several industrial applications including pol...
1,2,4-Butanetriol (BT) is a valuable chemical with extensive applications in many different fields. ...
Glucose is a cheap and readily available substrate for production of large-scale chemicals. Synthesi...
Glucose is a cheap and readily available substrate for production of large-scale chemicals. Synthesi...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
An NAD +-dependent d-xylose dehydrogenase, XylB, from Caulobacter crescentus was expressed in Saccha...
A synthetic pathway for (D)-xylose assimilation was stoichiometrically evaluated and implemented in ...
[[abstract]]Glucose and xylose are two major sugars of lignocellulosic hydrolysate. The regulatory p...
A synthetic pathway for (d)-xylose assimilation was stoichiometrically evaluated and implemented in ...
Before fermentation with hemicellulosic hydrolysate as a substrate, it is generally necessary to det...
BackgroundWe previously developed an E. coli strain that overproduces medium-chain methyl ketones fo...
The solvent-tolerant bacterium Pseudomonas putida S12 was engineered to utilize xylose as a substrat...
Xylonate is a valuable chemical for versatile applications. Although the chemical synthesis route an...
Ethylene glycol (EG) is an important chemical used for several industrial applications including pol...
1,2,4-Butanetriol (BT) is a valuable chemical with extensive applications in many different fields. ...
Glucose is a cheap and readily available substrate for production of large-scale chemicals. Synthesi...
Glucose is a cheap and readily available substrate for production of large-scale chemicals. Synthesi...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
Bio-production of fuels and chemicals from lignocellulosic C5 sugars usually requires the use of the...
An NAD +-dependent d-xylose dehydrogenase, XylB, from Caulobacter crescentus was expressed in Saccha...
A synthetic pathway for (D)-xylose assimilation was stoichiometrically evaluated and implemented in ...
[[abstract]]Glucose and xylose are two major sugars of lignocellulosic hydrolysate. The regulatory p...
A synthetic pathway for (d)-xylose assimilation was stoichiometrically evaluated and implemented in ...
Before fermentation with hemicellulosic hydrolysate as a substrate, it is generally necessary to det...
BackgroundWe previously developed an E. coli strain that overproduces medium-chain methyl ketones fo...
The solvent-tolerant bacterium Pseudomonas putida S12 was engineered to utilize xylose as a substrat...