The genome of bacteriophage T4 encodes three polynucleotide ligases, which seal the backbone of nucleic acids during infection of host bacteria. The T4Dnl (T4 DNA ligase) and two RNA ligases [T4Rnl1 (T4 RNA ligase 1) and T4Rnl2] join a diverse array of substrates, including nicks that are present in double-stranded nucleic acids, albeit with different efficiencies. To unravel the biochemical and functional relationship between these proteins, a systematic analysis of their substrate specificity was performed using recombinant proteins. The ability of each protein to ligate 20 bp double-stranded oligonucleotides containing a single-strand break was determined. Between 4 and 37 °C, all proteins ligated substrates containing various combinati...
All known life relies on the proper transmission of genetic information through DNA and RNA to prote...
selection of kinase ribozymes for small molecule metabolites, such as free nucleosides, will requir...
An RNA ligase previously detected in extracts of Escherichia coli is capable of joining Saccharomyce...
The genome of bacteriophage T4 encodes three polynucleotide ligases, which seal the backbone of nucl...
DNA ligases catalyze the repair of phosphate backbone breaks in DNA, acting with highest activity on...
AbstractBacteriophage T4 RNA ligase 2 (Rnl2) exemplifies a subfamily of RNA strand-joining enzymes t...
AbstractThe interaction of nucleotides with T4 DNA and RNA ligases has been characterized using ultr...
RNA ligase and tail fiber attachment activities, normally induced following bacteriophage T4 infecti...
AbstractDuring the last 50years, major advances in molecular biology and biotechnology have been att...
SummaryT4 RNA ligase 2 (Rnl2) and kinetoplastid RNA editing ligases exemplify a family of RNA repair...
AbstractBacteriophage T4 RNase H is a 5′ to 3′ exonuclease that removes RNA primer from the lagging ...
The DNA ligase from bacteriophage T4 is one of the most widely used enzymes in molecular biology. It...
BACKGROUND: In vitro selection of kinase ribozymes for small molecule metabolites, such as free nucl...
T4 DNA ligase is capable of ligating 2’OMe-RNA duplexes, HNA, LNA and FANA mixed sequences in the pr...
DNA ligases are critical enzymes of DNA metabolism. The reaction they catalyse (the joining of nicke...
All known life relies on the proper transmission of genetic information through DNA and RNA to prote...
selection of kinase ribozymes for small molecule metabolites, such as free nucleosides, will requir...
An RNA ligase previously detected in extracts of Escherichia coli is capable of joining Saccharomyce...
The genome of bacteriophage T4 encodes three polynucleotide ligases, which seal the backbone of nucl...
DNA ligases catalyze the repair of phosphate backbone breaks in DNA, acting with highest activity on...
AbstractBacteriophage T4 RNA ligase 2 (Rnl2) exemplifies a subfamily of RNA strand-joining enzymes t...
AbstractThe interaction of nucleotides with T4 DNA and RNA ligases has been characterized using ultr...
RNA ligase and tail fiber attachment activities, normally induced following bacteriophage T4 infecti...
AbstractDuring the last 50years, major advances in molecular biology and biotechnology have been att...
SummaryT4 RNA ligase 2 (Rnl2) and kinetoplastid RNA editing ligases exemplify a family of RNA repair...
AbstractBacteriophage T4 RNase H is a 5′ to 3′ exonuclease that removes RNA primer from the lagging ...
The DNA ligase from bacteriophage T4 is one of the most widely used enzymes in molecular biology. It...
BACKGROUND: In vitro selection of kinase ribozymes for small molecule metabolites, such as free nucl...
T4 DNA ligase is capable of ligating 2’OMe-RNA duplexes, HNA, LNA and FANA mixed sequences in the pr...
DNA ligases are critical enzymes of DNA metabolism. The reaction they catalyse (the joining of nicke...
All known life relies on the proper transmission of genetic information through DNA and RNA to prote...
selection of kinase ribozymes for small molecule metabolites, such as free nucleosides, will requir...
An RNA ligase previously detected in extracts of Escherichia coli is capable of joining Saccharomyce...