Although Escherichia coli and Salmonella enterica inhabit similar niches and employ similar genetic regulatory programs, we find that they differ significantly in their DNA supercoiling responses to environmental and antibiotic challenges. Whereas E. coli demonstrates large dynamic transitions in supercoiling in response growth phase, osmotic pressure, and novobiocin treatment, supercoiling levels are much less variable in S. enterica. The FIS protein is a global regulator of supercoiling in E. coli, but it was found to have less influence over supercoiling control in S. enterica. These inter-species differences fine-tune gene promoters to endogenous supercoiling and FIS levels. Transferring a Salmonella virulence gene promoter (PssrA) ...
<div><p>Fis, one of the most important nucleoid-associated proteins, functions as a global regulator...
The proU locus encodes an osmotically inducible glycine betaine transport system that is important i...
International audienceDNA supercoiling acts as a global transcriptional regulator in bacteria, that ...
International audienceAlthough Escherichia coli and Salmonella enterica inhabit similar niches and e...
Although Escherichia coli and Salmonella enterica inhabit similar niches and employ similar genetic ...
DNA supercoiling is the master function that interconnects chromosome structure and global gene tran...
Prokaryotes have an essential gene—gyrase—that catalyzes negative supercoiling of plasmi...
International audienceDNA supercoiling is the master function that interconnects chromosome structur...
International audienceDNA supercoiling acts as a global and ancestral regulator of bacterial gene ex...
THESIS 7586The Fis protein was found to influence the superhelical density of DNA and its ability to...
DNA-protein loops can be essential for gene regulation. The Escherichia coli lactose (lac) operon is...
Fis, one of the most important nucleoid-associated proteins, functions as a global regulator of tran...
AbstractA powerful combination of single-gene studies and whole genome approaches has provided a wea...
© 2020 The Authors In enteric bacteria, DNA supercoiling is highly responsive to environmental condi...
The nucleoid-associated protein FIS is a global regulator of gene expression and chromosome structur...
<div><p>Fis, one of the most important nucleoid-associated proteins, functions as a global regulator...
The proU locus encodes an osmotically inducible glycine betaine transport system that is important i...
International audienceDNA supercoiling acts as a global transcriptional regulator in bacteria, that ...
International audienceAlthough Escherichia coli and Salmonella enterica inhabit similar niches and e...
Although Escherichia coli and Salmonella enterica inhabit similar niches and employ similar genetic ...
DNA supercoiling is the master function that interconnects chromosome structure and global gene tran...
Prokaryotes have an essential gene—gyrase—that catalyzes negative supercoiling of plasmi...
International audienceDNA supercoiling is the master function that interconnects chromosome structur...
International audienceDNA supercoiling acts as a global and ancestral regulator of bacterial gene ex...
THESIS 7586The Fis protein was found to influence the superhelical density of DNA and its ability to...
DNA-protein loops can be essential for gene regulation. The Escherichia coli lactose (lac) operon is...
Fis, one of the most important nucleoid-associated proteins, functions as a global regulator of tran...
AbstractA powerful combination of single-gene studies and whole genome approaches has provided a wea...
© 2020 The Authors In enteric bacteria, DNA supercoiling is highly responsive to environmental condi...
The nucleoid-associated protein FIS is a global regulator of gene expression and chromosome structur...
<div><p>Fis, one of the most important nucleoid-associated proteins, functions as a global regulator...
The proU locus encodes an osmotically inducible glycine betaine transport system that is important i...
International audienceDNA supercoiling acts as a global transcriptional regulator in bacteria, that ...