The kinetic properties of an adenine DNA methyltransferase involved in cell cycle regulation of Caulobacter crescentus have been elucidated by using defined unmethylated or hemimethylated DNA (DNAHM) substrates. Catalytic efficiency is significantly enhanced with a DNAHM substrate. Biphasic kinetic behavior during methyl incorporation is observed when unmethylated or DNAHM substrates are used, indicating that a step after chemistry limits enzyme turnover and is most likely the release of enzyme from methylated DNA product. The enzyme is thermally inactivated at 30°C within 20 min; this process is substantially decreased in the presence of saturating concentrations of DNAHM, suggesting that the enzyme preferentially binds DNA before S-adenos...
DNA methylation plays important roles via regulation of numerous cellular mechanisms in diverse orga...
The expression of the Caulobacter ccrM gene and the activity of its product, the M.Ccr II DNA methyl...
<div><p>Heritable DNA methylation imprints are ubiquitous and underlie genetic variability from bact...
The kinetic properties of an adenine DNA methyltransferase involved in cell cycle regulation of Caul...
The kinetic properties of an adenine DNA methyltransferase involved in cell cycle regulation of Caul...
Two DNA methyltransferases, Dam and β-class cell cycle-regulated DNA methyltransferase (CcrM), are k...
The CcrM adenine DNA methyltransferase, which specifically modifies GANTC sequences, is necessary fo...
The Caulobacter DNA methyltransferase CcrM is one of five master cell-cycle regulators. CcrM is tran...
N(6)-methyl-adenines can serve as epigenetic signals for interactions between regulatory DNA sequenc...
DNA adenine methylation plays an important role in several critical bacterial processes including mi...
DNA methylation is involved in a diversity of processes in bacteria, including maintenance of genome...
DNA methylation is involved in a diversity of processes in bacteria, including maintenance of genome...
The Dam methylase of gamma-proteobacteria and the CcrM methylase of alpha-proteobacteria catalyze an...
Recognition of a specific DNA sequence by a protein is probably the best example of macromolecular i...
HP0593 DNA-(N(6)-adenine)-methyltransferase (HP0593 MTase) is a member of a Type III restriction-mod...
DNA methylation plays important roles via regulation of numerous cellular mechanisms in diverse orga...
The expression of the Caulobacter ccrM gene and the activity of its product, the M.Ccr II DNA methyl...
<div><p>Heritable DNA methylation imprints are ubiquitous and underlie genetic variability from bact...
The kinetic properties of an adenine DNA methyltransferase involved in cell cycle regulation of Caul...
The kinetic properties of an adenine DNA methyltransferase involved in cell cycle regulation of Caul...
Two DNA methyltransferases, Dam and β-class cell cycle-regulated DNA methyltransferase (CcrM), are k...
The CcrM adenine DNA methyltransferase, which specifically modifies GANTC sequences, is necessary fo...
The Caulobacter DNA methyltransferase CcrM is one of five master cell-cycle regulators. CcrM is tran...
N(6)-methyl-adenines can serve as epigenetic signals for interactions between regulatory DNA sequenc...
DNA adenine methylation plays an important role in several critical bacterial processes including mi...
DNA methylation is involved in a diversity of processes in bacteria, including maintenance of genome...
DNA methylation is involved in a diversity of processes in bacteria, including maintenance of genome...
The Dam methylase of gamma-proteobacteria and the CcrM methylase of alpha-proteobacteria catalyze an...
Recognition of a specific DNA sequence by a protein is probably the best example of macromolecular i...
HP0593 DNA-(N(6)-adenine)-methyltransferase (HP0593 MTase) is a member of a Type III restriction-mod...
DNA methylation plays important roles via regulation of numerous cellular mechanisms in diverse orga...
The expression of the Caulobacter ccrM gene and the activity of its product, the M.Ccr II DNA methyl...
<div><p>Heritable DNA methylation imprints are ubiquitous and underlie genetic variability from bact...