In bacteriophage T7 the gene 2.5 single-stranded DNA-binding protein and the gene 4 helicase together promote the annealing of homologous regions of two DNA partners to form a joint molecule and subsequent strand transfer. In this reaction T7 gene 2.5 protein is essential for joint molecule formation, but is not required for T7 gene 4 protein-mediated strand transfer. T7 gene 4 helicase alone is able to mediate strand transfer, provided that a joint molecule is available. The present paper shows that, in addition, strand transfer proceeds at a normal rate even when both DNA partners contain ultraviolet-induced pyrimidine dimers (0.6 dimer per 100 nt). An insert of a relatively long (842-nt) segment of nonhomologous DNA in the single-strande...
Escherichia coli helicase II, product of the uvrD gene, is a single-stranded DNA-dependent nucleosid...
Replicative DNA helicases generally unwind DNA as a single hexamer that encircles and translocates a...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...
In bacteriophage T7 the gene 2.5 single-stranded DNA-binding protein and the gene 4 helicase togethe...
The bacteriophage T7 gene 4 protein, like a number of helicases, is believed to function as a hexame...
The annealing of complementary strands of DNA is a vital step during the process of DNA replication,...
The DNA helicase encoded by gene 4 of bacteriophage T7 assembles on single-stranded DNA as a hexamer...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
AbstractHomologous strand exchange is a central step in general genetic recombination. A multiprotei...
DNA helicase and polymerase work cooperatively at the replication fork to perform leading-strand DNA...
Bacteriophage T7 gene 2.5 protein has been purified to homogeneity from cells overexpressing its gen...
DNA helicases play pivotal roles in homologous recombination and recombinational DNA repair. They ar...
Bacteriophage T7 helicase (T7 gene 4 helicase-primase) is a prototypical member of the ring-shaped f...
The ring-shaped helicase of bacteriophage T7 (gp4), the product of gene 4, has basic β-hairpin loops...
INTRODUCTIONDNA replication has been studied since the 1950s. It is well established that double hel...
Escherichia coli helicase II, product of the uvrD gene, is a single-stranded DNA-dependent nucleosid...
Replicative DNA helicases generally unwind DNA as a single hexamer that encircles and translocates a...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...
In bacteriophage T7 the gene 2.5 single-stranded DNA-binding protein and the gene 4 helicase togethe...
The bacteriophage T7 gene 4 protein, like a number of helicases, is believed to function as a hexame...
The annealing of complementary strands of DNA is a vital step during the process of DNA replication,...
The DNA helicase encoded by gene 4 of bacteriophage T7 assembles on single-stranded DNA as a hexamer...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
AbstractHomologous strand exchange is a central step in general genetic recombination. A multiprotei...
DNA helicase and polymerase work cooperatively at the replication fork to perform leading-strand DNA...
Bacteriophage T7 gene 2.5 protein has been purified to homogeneity from cells overexpressing its gen...
DNA helicases play pivotal roles in homologous recombination and recombinational DNA repair. They ar...
Bacteriophage T7 helicase (T7 gene 4 helicase-primase) is a prototypical member of the ring-shaped f...
The ring-shaped helicase of bacteriophage T7 (gp4), the product of gene 4, has basic β-hairpin loops...
INTRODUCTIONDNA replication has been studied since the 1950s. It is well established that double hel...
Escherichia coli helicase II, product of the uvrD gene, is a single-stranded DNA-dependent nucleosid...
Replicative DNA helicases generally unwind DNA as a single hexamer that encircles and translocates a...
A single copy of bacteriophage T7 DNA polymerase and DNA helicase advance the replication fork with ...