DNA ligases, the enzymes responsible for joining breaks in the phosphodiester backbone of DNA during replication and repair, vary considerably in size and structure. The smallest members of this enzyme class carry out their functions with pared-down protein scaffolds comprising only the core catalytic domains. Here we use sequence similarity network analysis of minimal DNA ligases from all biological super kingdoms, to investigate their evolutionary origins, with a particular focus on bacterial variants. This revealed that bacterial Lig C sequences cluster more closely with Eukaryote and Archaeal ligases, while bacterial Lig E sequences cluster most closely with viral sequences. Further refinement of the latter group delineates a cohesive c...
The 298-amino acid ATP-dependent DNA ligase of Chlorella virus PBCV-1 is the smallest eukaryotic DNA...
Analysis of the genome of "Ferroplasma acidarmanus" Fer1, an archaeon that is an extreme acidophile,...
Escherichia coli and T4 DNA ligases have demonstrated the different cofactor requirements and elucid...
DNA ligases, the enzymes responsible for joining breaks in the phosphodiester backbone of DNA during...
DNA ligases join breaks in the phosphodiester backbone of DNA molecules and are used in many essenti...
DNA ligases are critical enzymes of DNA metabolism. The reaction they catalyse (the joining of nicke...
Published version also available at http://dx.doi.org/10.1107/S1399004714021099DNA ligases are a str...
A 3382 bp fragment containing a gene for a DNA ligase from the extremely thermophilic, acidophilic, ...
DNA ligases join the ends of DNA molecules during replication, repair and recombination. ATP-depende...
We report that Chlorella virus PBCV-1 encodes a 298-amino-acid ATP-dependent DNA ligase. The PBCV-1 ...
AbstractThe crystal structure of the ATP-dependent DNA ligase from bacteriophage T7 has been solved ...
AbstractMimivirus, a parasite of Acanthamoeba polyphaga, is the largest DNA virus known; it encodes ...
AbstractBackground: DNA ligases catalyse phosphodiester bond formation between adjacent bases in nic...
AbstractDuring the last 50years, major advances in molecular biology and biotechnology have been att...
Background: DNA ligases catalyse phosphodiester bond formation between adjacent bases in nicked DNA,...
The 298-amino acid ATP-dependent DNA ligase of Chlorella virus PBCV-1 is the smallest eukaryotic DNA...
Analysis of the genome of "Ferroplasma acidarmanus" Fer1, an archaeon that is an extreme acidophile,...
Escherichia coli and T4 DNA ligases have demonstrated the different cofactor requirements and elucid...
DNA ligases, the enzymes responsible for joining breaks in the phosphodiester backbone of DNA during...
DNA ligases join breaks in the phosphodiester backbone of DNA molecules and are used in many essenti...
DNA ligases are critical enzymes of DNA metabolism. The reaction they catalyse (the joining of nicke...
Published version also available at http://dx.doi.org/10.1107/S1399004714021099DNA ligases are a str...
A 3382 bp fragment containing a gene for a DNA ligase from the extremely thermophilic, acidophilic, ...
DNA ligases join the ends of DNA molecules during replication, repair and recombination. ATP-depende...
We report that Chlorella virus PBCV-1 encodes a 298-amino-acid ATP-dependent DNA ligase. The PBCV-1 ...
AbstractThe crystal structure of the ATP-dependent DNA ligase from bacteriophage T7 has been solved ...
AbstractMimivirus, a parasite of Acanthamoeba polyphaga, is the largest DNA virus known; it encodes ...
AbstractBackground: DNA ligases catalyse phosphodiester bond formation between adjacent bases in nic...
AbstractDuring the last 50years, major advances in molecular biology and biotechnology have been att...
Background: DNA ligases catalyse phosphodiester bond formation between adjacent bases in nicked DNA,...
The 298-amino acid ATP-dependent DNA ligase of Chlorella virus PBCV-1 is the smallest eukaryotic DNA...
Analysis of the genome of "Ferroplasma acidarmanus" Fer1, an archaeon that is an extreme acidophile,...
Escherichia coli and T4 DNA ligases have demonstrated the different cofactor requirements and elucid...