Determining how facultative anaerobic organisms sense and direct cellular responses to electron acceptor availability has been a subject of intense study. However, even in the model organism Escherichia coli, established mechanisms only explain a small fraction of the hundreds of genes that are regulated during electron acceptor shifts. Here we propose a qualitative model that accounts for the full breadth of regulated genes by detailing how two global transcription factors (TFs), ArcA and Fnr of E. coli, sense key metabolic redox ratios and act on a genome-wide basis to regulate anabolic, catabolic, and energy generation pathways. We first fill gaps in our knowledge of this transcriptional regulatory network by carrying out ChIP-chip and g...
Transcription networks consist of hundreds of transcription factors with thousands of often overlapp...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Bioprocesses conducted under conditions with restricted O2 supply are increasingly exploited for the...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
<div><p>Determining how facultative anaerobic organisms sense and direct cellular responses to elect...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
<div><p>Despite the importance of maintaining redox homeostasis for cellular viability, how cells co...
Despite the importance of maintaining redox homeostasis for cellular viability, how cells control re...
Microorganisms adjust metabolic activity to cope with diverse environments. While many studies have ...
Abstract Microorganisms adjust metabolic activity to cope with diverse environments. While many stud...
Microorganisms adjust metabolic activity to cope with diverse environments. While many studies have ...
AbstractThe facultatively anaerobic Escherichia coli is able to grow by aerobic and by anaerobic res...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Transcription networks consist of hundreds of transcription factors with thousands of often overlapp...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Bioprocesses conducted under conditions with restricted O2 supply are increasingly exploited for the...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
<div><p>Determining how facultative anaerobic organisms sense and direct cellular responses to elect...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
Determining how facultative anaerobic organisms sense and direct cellular responses to electron acce...
<div><p>Despite the importance of maintaining redox homeostasis for cellular viability, how cells co...
Despite the importance of maintaining redox homeostasis for cellular viability, how cells control re...
Microorganisms adjust metabolic activity to cope with diverse environments. While many studies have ...
Abstract Microorganisms adjust metabolic activity to cope with diverse environments. While many stud...
Microorganisms adjust metabolic activity to cope with diverse environments. While many studies have ...
AbstractThe facultatively anaerobic Escherichia coli is able to grow by aerobic and by anaerobic res...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Transcription networks consist of hundreds of transcription factors with thousands of often overlapp...
Metabolic cofactors such as NADH and ATP play important roles in a large number of cellular reaction...
Bioprocesses conducted under conditions with restricted O2 supply are increasingly exploited for the...