Trm5 is a eukaryal and archaeal tRNA methyltransferase that catalyzes methyl transfer from S-adenosylmethionine (AdoMet) to the N(1) position of G37 directly 3\u27 to the anticodon. While the biological role of m(1)G37 in enhancing translational fidelity is well established, the catalytic mechanism of Trm5 has remained obscure. To address the mechanism of Trm5 and more broadly the mechanism of N-methylation to nucleobases, we examined the pH-activity profile of an archaeal Trm5 enzyme, and performed structure-guided mutational analysis. The data reveal a marked dependence of enzyme-catalyzed methyl transfer on hydrogen ion equilibria: the single-turnover rate constant for methylation increases by one order of magnitude from pH 6.0 to reach ...
The bacterial enzyme t-RNA (m1G37) methyltransferase (TrmD) is an ideal anti-microbial drug target s...
In sequenced genomes, genes belonging to the cluster of orthologous group COG1041 are exclusively, a...
Recently, it has been discovered that different DNA-(cytosine C5)-methyltransferases including DNMT3...
Trm5 is a eukaryal and archaeal tRNA methyltransferase that catalyzes methyl transfer from S-adenosy...
Enzymes of the Trm5 family catalyze methyl transfer from S-adenosyl methionine (AdoMet) to the N¹ of...
SummaryThe catalytic mechanism of the majority of S-adenosyl methionine (AdoMet)-dependent methyl tr...
Enzymes that use distinct active site structures to perform identical reactions are known as analogo...
The tRNA methyltransferase Trm10, conserved throughout Eukarya and Archaea, catalyzes N1-methylation...
The N1-atom of guanosine at position 37 in transfer RNA (tRNA) is methylated by tRNA methyltransfera...
The crystal structure of Escherichia coli tRNA (guanosine-1) methyltransferase (TrmD) complexed with...
Dnmt2 methylates cytosine at position 38 of tRNA(Asp) in a variety of eukaryotic organisms. A correl...
DNA methylation plays important roles via regulation of numerous cellular mechanisms in diverse orga...
Mg2+ is required for the catalytic activity of TrmD, a bacteria-specific methyltransferase that is m...
A methyltransferase ribozyme (MTR1) was selected in vitro to catalyze alkyl transfer from exogenous ...
The bacterial enzyme t-RNA (m1G37) methyltransferase (TrmD) is an ideal anti-microbial drug target s...
In sequenced genomes, genes belonging to the cluster of orthologous group COG1041 are exclusively, a...
Recently, it has been discovered that different DNA-(cytosine C5)-methyltransferases including DNMT3...
Trm5 is a eukaryal and archaeal tRNA methyltransferase that catalyzes methyl transfer from S-adenosy...
Enzymes of the Trm5 family catalyze methyl transfer from S-adenosyl methionine (AdoMet) to the N¹ of...
SummaryThe catalytic mechanism of the majority of S-adenosyl methionine (AdoMet)-dependent methyl tr...
Enzymes that use distinct active site structures to perform identical reactions are known as analogo...
The tRNA methyltransferase Trm10, conserved throughout Eukarya and Archaea, catalyzes N1-methylation...
The N1-atom of guanosine at position 37 in transfer RNA (tRNA) is methylated by tRNA methyltransfera...
The crystal structure of Escherichia coli tRNA (guanosine-1) methyltransferase (TrmD) complexed with...
Dnmt2 methylates cytosine at position 38 of tRNA(Asp) in a variety of eukaryotic organisms. A correl...
DNA methylation plays important roles via regulation of numerous cellular mechanisms in diverse orga...
Mg2+ is required for the catalytic activity of TrmD, a bacteria-specific methyltransferase that is m...
A methyltransferase ribozyme (MTR1) was selected in vitro to catalyze alkyl transfer from exogenous ...
The bacterial enzyme t-RNA (m1G37) methyltransferase (TrmD) is an ideal anti-microbial drug target s...
In sequenced genomes, genes belonging to the cluster of orthologous group COG1041 are exclusively, a...
Recently, it has been discovered that different DNA-(cytosine C5)-methyltransferases including DNMT3...