DNA methylation-dependent restriction enzymes have many applications in genetic engineering and in the analysis of the epigenetic state of eukaryotic genomes. Nevertheless, high-resolution structures have not yet been reported, and therefore mechanisms of DNA methylation-dependent cleavage are not understood. Here, we present a biochemical analysis and high-resolution DNA co-crystal structure of the N(6)-methyladenine (m6A)-dependent restriction enzyme R.DpnI. Our data show that R.DpnI consists of an N-terminal catalytic PD-(D/E)XK domain and a C-terminal winged helix (wH) domain. Surprisingly, both domains bind DNA in a sequence- and methylation-sensitive manner. The crystal contains R.DpnI with fully methylated target DNA bound to the wH ...
<div><p>Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic...
Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic activit...
Mrr superfamily of homologous genes in microbial genomes restricts modified DNA in vivo. However, th...
R.DpnI consists of N-terminal catalytic and C-terminal winged helix domains that are separately spec...
R.DpnI consists of N-terminal catalytic and C-terminal winged helix domains that are separately spec...
AbstractBackground: Methyltransferases (Mtases) catalyze the transfer of methyl groups from S-adenos...
MspJI belongs to a family of restriction enzymes that cleave DNA containing 5-methylcytosine (5mC) o...
The molecular basis of the interaction of KpnI restriction endonuclease (REase) and the correspondin...
Restriction-modification systems digest non-methylated invading DNA, while protecting host DNA again...
KpnI DNA-(N6-adenine)-methyltransferase (KpnI MTase) is a member of a restriction-modification (R-M)...
The genes encoding the KpnI restriction endonuclease and methyltransferase from Klebsiella pneumonia...
AbstractMany organisms expand the information content of their genome through enzymatic methylation ...
The creation of restriction enzymes with programmable DNA-binding and -cleavage specificities has lo...
Type I restriction-modification (RM) systems are comprised of two multi-subunit enzymes, the methylt...
KpnI DNA-(N<SUP>6</SUP>-adenine) methyltransferase (M.KpnI) recognises the sequence 5'-GGTACC-3' and...
<div><p>Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic...
Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic activit...
Mrr superfamily of homologous genes in microbial genomes restricts modified DNA in vivo. However, th...
R.DpnI consists of N-terminal catalytic and C-terminal winged helix domains that are separately spec...
R.DpnI consists of N-terminal catalytic and C-terminal winged helix domains that are separately spec...
AbstractBackground: Methyltransferases (Mtases) catalyze the transfer of methyl groups from S-adenos...
MspJI belongs to a family of restriction enzymes that cleave DNA containing 5-methylcytosine (5mC) o...
The molecular basis of the interaction of KpnI restriction endonuclease (REase) and the correspondin...
Restriction-modification systems digest non-methylated invading DNA, while protecting host DNA again...
KpnI DNA-(N6-adenine)-methyltransferase (KpnI MTase) is a member of a restriction-modification (R-M)...
The genes encoding the KpnI restriction endonuclease and methyltransferase from Klebsiella pneumonia...
AbstractMany organisms expand the information content of their genome through enzymatic methylation ...
The creation of restriction enzymes with programmable DNA-binding and -cleavage specificities has lo...
Type I restriction-modification (RM) systems are comprised of two multi-subunit enzymes, the methylt...
KpnI DNA-(N<SUP>6</SUP>-adenine) methyltransferase (M.KpnI) recognises the sequence 5'-GGTACC-3' and...
<div><p>Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic...
Bacterial restriction-modification (RM) systems are comprised of two complementary enzymatic activit...
Mrr superfamily of homologous genes in microbial genomes restricts modified DNA in vivo. However, th...