Fatty acid metabolism and its regulation are known to play important roles in bacteria and eukaryotes. By contrast, although certain archaea appear to metabolize fatty acids, the regulation of the underlying pathways in these organisms remains unclear. Here, we show that a TetR-family transcriptional regulator (FadR(sa)) is involved in regulation of fatty acid metabolism in the crenarchaeon Sulfolobus acidocaldarius. Functional and structural analyses show that FadR(sa) binds to DNA at semi-palindromic recognition sites in two distinct stoichiometric binding modes depending on the operator sequence. Genome-wide transcriptomic and chromatin immunoprecipitation analyses demonstrate that the protein binds to only four genomic sites, acting as ...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...
International audienceIn Escherichia coli, the FadR transcriptional regulator represses the expressi...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...
Fatty acid metabolism and its regulation are known to play important roles in bacteria and eukaryote...
The FadR protein of Escherichia coli has been shown to play a dual role in transcription of the gene...
In Escherichia coli, FadR and FabR are transcriptional regulators that control the expression of fat...
International audienceIn Escherichia coli, FadR and FabR are transcriptional regulators that control...
The addition of fatty acids to either Escherichia coli or Bacillus subtilis elicits an elaborate cel...
One of the primary transcriptional regulators of fatty acid homeostasis in many prokaryotes is the p...
<div><p>The biosynthesis of membrane lipids is an essential pathway for virtually all bacteria. Desp...
International audienceThe biosynthesis of membrane lipids is an essential pathway for virtually all ...
AbstractBacterial cells exert exquisite control over the biosynthesis of their membrane lipids, but ...
11 p.The biosynthesis of membrane lipids is an essential pathway for virtually all bacteria. Despite...
In Escherichia coli, the FadR transcriptional regulator represses the expression of fatty acid degra...
Bacteria can use branched-chain amino acids (ILV, i.e. isoleucine, leucine, valine) and fatty acids ...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...
International audienceIn Escherichia coli, the FadR transcriptional regulator represses the expressi...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...
Fatty acid metabolism and its regulation are known to play important roles in bacteria and eukaryote...
The FadR protein of Escherichia coli has been shown to play a dual role in transcription of the gene...
In Escherichia coli, FadR and FabR are transcriptional regulators that control the expression of fat...
International audienceIn Escherichia coli, FadR and FabR are transcriptional regulators that control...
The addition of fatty acids to either Escherichia coli or Bacillus subtilis elicits an elaborate cel...
One of the primary transcriptional regulators of fatty acid homeostasis in many prokaryotes is the p...
<div><p>The biosynthesis of membrane lipids is an essential pathway for virtually all bacteria. Desp...
International audienceThe biosynthesis of membrane lipids is an essential pathway for virtually all ...
AbstractBacterial cells exert exquisite control over the biosynthesis of their membrane lipids, but ...
11 p.The biosynthesis of membrane lipids is an essential pathway for virtually all bacteria. Despite...
In Escherichia coli, the FadR transcriptional regulator represses the expression of fatty acid degra...
Bacteria can use branched-chain amino acids (ILV, i.e. isoleucine, leucine, valine) and fatty acids ...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...
International audienceIn Escherichia coli, the FadR transcriptional regulator represses the expressi...
Escherichia coli FadR plays two regulatory roles in fatty acid metabolism. FadR represses the fatty ...