Bacterial DNA Methylation: a Cell Cycle Regulator?
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Bacterial DNA Methylation: a Cell Cycle Regulator?
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A cell cycle-regulated bacterial DNA methyltransferase is essential for viability.
The CcrM adenine DNA methyltransferase, which specifically modifies GANTC sequences, is necessary for viability in Caulobacter crescentus. To our knowledge, this is the first example of an essential p
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DNA methylation affects the cell cycle transcription of the CtrA global regulator in Caulobacter
The Caulobacter chromosome changes progressively from the fully methylated to the hemimethylated state during DNA replication. These changes in DNA methylation could signal differential binding of reg
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Regulation of bacterial cell cycle progression by redundant phosphatases
In the model organism Caulobacter crescentus, a network of two-component systems involving the response regulators CtrA, DivK and PleD coordinate cell cycle progression with differentiation. Active ph
NIAID Data Ecosystem00
Regulation of bacterial cell cycle progression by redundant phosphatases. Regulation of bacterial cell cycle progression by redundant phosphatases
In the model organism Caulobacter crescentus, a network of two-component systems involving the response regulators CtrA, DivK and PleD coordinate cell cycle progression with differentiation. Active ph
NIAID Data Ecosystem10
Regulation of bacterial cell cycle progression by redundant phosphatases
In the model organism Caulobacter crescentus, a network of two-component systems involving the response regulators CtrA, DivK and PleD coordinate cell cycle progression with differentiation. Active ph
NIAID Data Ecosystem20



