Endonuclease I is a junction-resolving enzyme encoded by bacteriophage T7, that selectively binds and cleaves four-way DNA junctions. We have recently solved the structure of this dimeric enzyme at atomic resolution, and identified the probable catalytic residues. The putative active site comprises the side-chains of three acidic amino acids (Glu20, Asp55 and Glu65) together with a lysine residue (Lys67), and shares strong similarities with a number of type II restriction enzymes. However, it differs from a typical restriction enzyme as the proposed catalytic residues in both active sites are contributed by both polypeptides of the dimer. Mutagenesis experiments confirm the importance of all the proposed active site residues. We have carrie...
The junction-resolving enzymes are a class of nucleases that introduce paired cleavages into four-wa...
The four-way (Holliday) DNA junction of homologous recombination is processed by the symmetrical cle...
Resolving enzymes bind highly selectively to four-way DNA junctions, but the mechanism of this struc...
Endonuclease I is a junction-resolving enzyme encoded by bacteriophage T7, that selectively binds an...
The chemical mechanism of phosphodiester bond hydrolysis catalyzed by a junction-resolving enzyme ha...
We have solved the crystal structure of the Holliday junction resolving enzyme T7 endonuclease I at ...
International audienceThe junction-resolving enzyme endonuclease I is selective for the structure of...
The four-way (Holliday) DNA junction is the central intermediate in homologous recombination, a ubiq...
The junction-resolving enzyme endonuclease I is selective for the structure of the DNA four-way (Hol...
The four-way (Holliday) DNA junction of homologous recombination is processed by the symmetrical cle...
The four-way (Holliday) DNA junction is the central intermediate in homologous recombination. It is ...
The four-way (Holiday) DNA junction is the central intermediate in homologous recombination. It is u...
This work was supported by grants from The Engineering and Physical Sciences Research Council (EPSRC...
T7 endonuclease I binds specifically to four-way junctions in duplex DNA and promotes their resoluti...
T7 endonuclease I is a dimeric nuclease that is selective for four-way DNA junctions. Previous cryst...
The junction-resolving enzymes are a class of nucleases that introduce paired cleavages into four-wa...
The four-way (Holliday) DNA junction of homologous recombination is processed by the symmetrical cle...
Resolving enzymes bind highly selectively to four-way DNA junctions, but the mechanism of this struc...
Endonuclease I is a junction-resolving enzyme encoded by bacteriophage T7, that selectively binds an...
The chemical mechanism of phosphodiester bond hydrolysis catalyzed by a junction-resolving enzyme ha...
We have solved the crystal structure of the Holliday junction resolving enzyme T7 endonuclease I at ...
International audienceThe junction-resolving enzyme endonuclease I is selective for the structure of...
The four-way (Holliday) DNA junction is the central intermediate in homologous recombination, a ubiq...
The junction-resolving enzyme endonuclease I is selective for the structure of the DNA four-way (Hol...
The four-way (Holliday) DNA junction of homologous recombination is processed by the symmetrical cle...
The four-way (Holliday) DNA junction is the central intermediate in homologous recombination. It is ...
The four-way (Holiday) DNA junction is the central intermediate in homologous recombination. It is u...
This work was supported by grants from The Engineering and Physical Sciences Research Council (EPSRC...
T7 endonuclease I binds specifically to four-way junctions in duplex DNA and promotes their resoluti...
T7 endonuclease I is a dimeric nuclease that is selective for four-way DNA junctions. Previous cryst...
The junction-resolving enzymes are a class of nucleases that introduce paired cleavages into four-wa...
The four-way (Holliday) DNA junction of homologous recombination is processed by the symmetrical cle...
Resolving enzymes bind highly selectively to four-way DNA junctions, but the mechanism of this struc...