Abstract Background Glucosamine-6-phosphate N-acetyltransferase (GNA1) is the key enzyme that causes overproduction of N-acetylglucosamine in Bacillus subtilis. Previously, we increased GlcNAc production by promoting the expression of GNA1 from Caenorhabditis elegans (CeGNA1) in an engineered B. subtilis strain BSGN12. In this strain overflow metabolism to by-products acetoin and acetate had been blocked by mutations, however pyruvate accumulated as an overflow metabolite. Although overexpression of CeGNA1 drove carbon flux from pyruvate to the GlcNAc synthesis pathway and decreased pyruvate accumulation, the residual pyruvate reduced the intracellular pH, resulting in inhibited CeGNA1 activity and limited GlcNAc production. Results In this...
Bacillus subtilis is extensively applied as a microorganism for the high-level production of heterol...
Bacillus subtilis is a typical industrial microorganism and is widely used in industrial biotechnolo...
Single gene overexpression in product pathways such as lysine synthesis has often been employed in m...
Microbial cultures usually produce a significant amount of acidic byproducts which can represses cel...
Recent advances in genome engineering have further widened the gap between our ability to implement ...
One of the primary goals of microbial metabolic engineering is to achieve high titer, yield and prod...
Poly-γ-glutamic acid (γ-PGA) is an emerging biopolymer produced by several Bacillus species. To impr...
Additional file 1: Table S1. Primers used in this study. Fig S1. The mutagenesis selection process. ...
Abstract Background Genome-scale metabolic models (GEMs) allow predicting metabolic phenotypes from ...
Synthetic Biology (SB) aims at the rational design and engineering of novel biological functions and...
Enzyme clustering can improve catalytic efficiency by facilitating the processing of intermediates. ...
In order to construct a food-safe strain that could produce glycolate, the metabolic modification of...
<div><p><i>B. subtilis</i> grows more rapidly using the amino sugar glucosamine as carbon source, th...
The development of commercial poly-γ-glutamic acid (γ-PGA) production by glutamate-dependent strains...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2001....
Bacillus subtilis is extensively applied as a microorganism for the high-level production of heterol...
Bacillus subtilis is a typical industrial microorganism and is widely used in industrial biotechnolo...
Single gene overexpression in product pathways such as lysine synthesis has often been employed in m...
Microbial cultures usually produce a significant amount of acidic byproducts which can represses cel...
Recent advances in genome engineering have further widened the gap between our ability to implement ...
One of the primary goals of microbial metabolic engineering is to achieve high titer, yield and prod...
Poly-γ-glutamic acid (γ-PGA) is an emerging biopolymer produced by several Bacillus species. To impr...
Additional file 1: Table S1. Primers used in this study. Fig S1. The mutagenesis selection process. ...
Abstract Background Genome-scale metabolic models (GEMs) allow predicting metabolic phenotypes from ...
Synthetic Biology (SB) aims at the rational design and engineering of novel biological functions and...
Enzyme clustering can improve catalytic efficiency by facilitating the processing of intermediates. ...
In order to construct a food-safe strain that could produce glycolate, the metabolic modification of...
<div><p><i>B. subtilis</i> grows more rapidly using the amino sugar glucosamine as carbon source, th...
The development of commercial poly-γ-glutamic acid (γ-PGA) production by glutamate-dependent strains...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2001....
Bacillus subtilis is extensively applied as a microorganism for the high-level production of heterol...
Bacillus subtilis is a typical industrial microorganism and is widely used in industrial biotechnolo...
Single gene overexpression in product pathways such as lysine synthesis has often been employed in m...