Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy plasmid containing the structural gene for helicase II, uvrD. In this paper a detailed description of the single-stranded DNA-dependent nucleoside 5'-triphosphatase and helicase reactions catalyzed by helicase II is presented. The results of this study suggest that nucleoside 5'-triphosphate hydrolysis provides the energy required for translocation of the enzyme along single-stranded DNA. Measurements of the rate of ATP hydrolysis using a variety of single-stranded DNAs of known structure and length suggest a processive translocation mechanism for helicase II. Single-stranded DNA coated with either Escherichia coli single-stranded DNA binding...
We have Initiated the characterization of the DNA helicases from HeLa cells, and we have observed at...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
AbstractSuperfamily I helicases are nonhexameric helicases responsible for the unwinding of nucleic ...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
Helicase I has been purified to greater than 95% homogeneity from an F+ strain of Escherichia coli, ...
Escherichia coli helicase II, product of the uvrD gene, is a single-stranded DNA-dependent nucleosid...
DNA helicase II is a well-characterized Escherichia coli enzyme capable of unwinding duplex DNA and ...
The role of the C terminus of Escherichia coli DNA helicase II (UvrD), a region outside the conserve...
A novel DNA helicase, scHelI, has been purified from whole cell extracts of Saccharomyces cerevisiae...
AbstractDNA is very stable in its double-stranded form. For many processes of DNA metabolism, such a...
DNA helicases are ubiquitous molecular motor proteins which harness the chemical free energy of ATP ...
DNA helicases catalyze the separation of double-stranded DNA into single strands using the energy of...
Most processes involving an organism’s genetic material, including replication, repair and recombina...
Helicases are thought to function as oligomers (generally dimers or hexamers). Here we demonstrate t...
Site-directed mutagenesis has been employed to address the functional significance of the highly con...
We have Initiated the characterization of the DNA helicases from HeLa cells, and we have observed at...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
AbstractSuperfamily I helicases are nonhexameric helicases responsible for the unwinding of nucleic ...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
Helicase I has been purified to greater than 95% homogeneity from an F+ strain of Escherichia coli, ...
Escherichia coli helicase II, product of the uvrD gene, is a single-stranded DNA-dependent nucleosid...
DNA helicase II is a well-characterized Escherichia coli enzyme capable of unwinding duplex DNA and ...
The role of the C terminus of Escherichia coli DNA helicase II (UvrD), a region outside the conserve...
A novel DNA helicase, scHelI, has been purified from whole cell extracts of Saccharomyces cerevisiae...
AbstractDNA is very stable in its double-stranded form. For many processes of DNA metabolism, such a...
DNA helicases are ubiquitous molecular motor proteins which harness the chemical free energy of ATP ...
DNA helicases catalyze the separation of double-stranded DNA into single strands using the energy of...
Most processes involving an organism’s genetic material, including replication, repair and recombina...
Helicases are thought to function as oligomers (generally dimers or hexamers). Here we demonstrate t...
Site-directed mutagenesis has been employed to address the functional significance of the highly con...
We have Initiated the characterization of the DNA helicases from HeLa cells, and we have observed at...
In all organisms, genetic information is locked within a double helix formed by the two antiparallel...
AbstractSuperfamily I helicases are nonhexameric helicases responsible for the unwinding of nucleic ...