AbstractHolliday junction resolving enzymes are required by all life forms that catalyse homologous recombination, including all cellular organisms and many bacterial and eukaryotic viruses. Here we report the identification of three distinct Holliday junction resolving enzyme activities present in two highly divergent archaeal species. Both Sulfolobus and Pyrococcus share the Hjc activity, and in addition possess unique secondary activities (Hje and Hjr). We propose by analogy with the two other domains of life that the latter enzymes are viral in origin, suggesting the widespread existence of archaeal viruses that rely on homologous recombination as part of their life cycle
Protein phosphorylation is one of the main protein post-translational modifications and regulates DN...
Holliday junction (HJ) resolution by resolving enzymes is essential for chromosome segregation and r...
The resolving enzyme Hjc, which cleaves Holliday junctions with a high degree of structural specific...
Holliday junction resolving enzymes are required by all life forms that catalyse homologous recombin...
Holliday junction resolving enzymes bind specifically to four-way DNA junctions created by the proce...
The rearrangement and repair of DNA by homologous recombination often involves the creation of Holli...
Four-way DNA intermediates, called Holliday junctions (HJs), can form during meiotic and mitotic rec...
Two archaeal Holliday junction resolving enzymes, Holliday junction (Hjc) and Holliday junction endo...
Two archaeal Holliday junction resolving enzymes, Holliday junction cleavage (Hjc) and Holliday junc...
AbstractBackground: Homologous recombination is a crucial mechanism in determining genetic diversity...
Holliday junction resolving enzymes are ubiquitous proteins that function in the pathway of homologo...
The rearrangement and repair of DNA by homologous recombination involves the creation of Holliday ju...
Homologous recombination (HR) maintains genome stability by promoting high fidelity DNA repair. Seve...
The rearrangement and repair of DNA by homologous recombination involves the creation of Holliday ju...
Holliday junction-resolving enzymes are nucleases that are highly specific for the structure of the ...
Protein phosphorylation is one of the main protein post-translational modifications and regulates DN...
Holliday junction (HJ) resolution by resolving enzymes is essential for chromosome segregation and r...
The resolving enzyme Hjc, which cleaves Holliday junctions with a high degree of structural specific...
Holliday junction resolving enzymes are required by all life forms that catalyse homologous recombin...
Holliday junction resolving enzymes bind specifically to four-way DNA junctions created by the proce...
The rearrangement and repair of DNA by homologous recombination often involves the creation of Holli...
Four-way DNA intermediates, called Holliday junctions (HJs), can form during meiotic and mitotic rec...
Two archaeal Holliday junction resolving enzymes, Holliday junction (Hjc) and Holliday junction endo...
Two archaeal Holliday junction resolving enzymes, Holliday junction cleavage (Hjc) and Holliday junc...
AbstractBackground: Homologous recombination is a crucial mechanism in determining genetic diversity...
Holliday junction resolving enzymes are ubiquitous proteins that function in the pathway of homologo...
The rearrangement and repair of DNA by homologous recombination involves the creation of Holliday ju...
Homologous recombination (HR) maintains genome stability by promoting high fidelity DNA repair. Seve...
The rearrangement and repair of DNA by homologous recombination involves the creation of Holliday ju...
Holliday junction-resolving enzymes are nucleases that are highly specific for the structure of the ...
Protein phosphorylation is one of the main protein post-translational modifications and regulates DN...
Holliday junction (HJ) resolution by resolving enzymes is essential for chromosome segregation and r...
The resolving enzyme Hjc, which cleaves Holliday junctions with a high degree of structural specific...