#Acetate is a beneficial #nutrient for E. coli at low #glycolytic flux
Pierre Millard et al
https://www.embopress.org/doi/full/10.15252/embj.2022113079
How #bacteria fend off #phagocytes. Control of #ElectronTransport & #glycolytic genes by Gre factors ensures energy & redox balancing outcomes that help #Salmonella to counter #antimicrobial activity of #phagocyte NADPH oxidase #PLOSBiology https://plos.io/3ZQoRZe
Gre factors help Salmonella adapt to oxidative stress by improving transcription elongation and fidelity of metabolic genes

Control of transcriptional fidelity and elongation of electron transport and glycolytic genes by Gre factors ensures energy and redox balancing outcomes that help Salmonella to counter the antimicrobial activity of phagocyte NADPH oxidase.

How #bacteria fend off #phagocytes. Control of #ElectronTransport & #glycolytic genes by Gre factors ensures energy & redox balancing outcomes that help #Salmonella to counter #antimicrobial activity of #phagocyte NADPH oxidase #PLOSBiology https://plos.io/3ZQoRZe
Gre factors help Salmonella adapt to oxidative stress by improving transcription elongation and fidelity of metabolic genes

Control of transcriptional fidelity and elongation of electron transport and glycolytic genes by Gre factors ensures energy and redox balancing outcomes that help Salmonella to counter the antimicrobial activity of phagocyte NADPH oxidase.

How #bacteria fend off #phagocytes. Control of #ElectronTransport & #glycolytic genes by Gre factors ensures energy & redox balancing outcomes that help #Salmonella to counter #antimicrobial activity of #phagocyte NADPH oxidase #PLOSBiology https://plos.io/3ZQoRZe
Gre factors help Salmonella adapt to oxidative stress by improving transcription elongation and fidelity of metabolic genes

Control of transcriptional fidelity and elongation of electron transport and glycolytic genes by Gre factors ensures energy and redox balancing outcomes that help Salmonella to counter the antimicrobial activity of phagocyte NADPH oxidase.