Site-directed mutagenesis has been employed to address the functional significance of the highly conserved aspartic and glutamic acid residues present in the Walker B (also called motif II) sequence in Escherichia coli DNA helicase II. Two mutant proteins, UvrDE221Q and UvrDD220NE221Q, were expressed and purified to apparent homogeneity. Biochemical characterization of the DNA-dependent ATPase activity of each mutant protein demonstrated a kcat that was < 0.5% of that of the wild-type protein, with no significant change in the apparent Km for ATP. The E221Q mutant protein exhibited no detectable unwinding of either partial duplex or blunt duplex DNA substrates. The D220NE221Q mutant, however, catalyzed unwinding of both partial duplex and b...
The Escherichia coli helD (encoding helicase IV) and uvrD (encoding helicase II) genes have been del...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...
Previous studies have shown that MutL physically interacts with UvrD (DNA helicase II) (Hall, M. C.,...
Site-directed mutagenesis has been employed to address the functional significance of the highly con...
A site-directed mutation in motif IV of Escherichia coli DNA helicase II (UvrD) was generated to exa...
To address the functional significance of motif III in Escherichia coli DNA helicase II, the conserv...
Biosynthetic errors and DNA damage introduce mismatches and lesions in DNA that can lead to mutation...
The role of the C terminus of Escherichia coli DNA helicase II (UvrD), a region outside the conserve...
The loss of DNA helicase II (UvrD) in Escherichia coli results in sensitivity to UV light and increa...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
Helicases are thought to function as oligomers (generally dimers or hexamers). Here we demonstrate t...
DNA helicases use energy derived from nucleoside 5′-triphosphate hydrolysis to catalyze the separati...
DNA helicase II is a well-characterized Escherichia coli enzyme capable of unwinding duplex DNA and ...
Helicase I has been purified to greater than 95% homogeneity from an F+ strain of Escherichia coli, ...
Various mutations were introduced in a conserved helicase domain (motif VI) of the AddA subunit of t...
The Escherichia coli helD (encoding helicase IV) and uvrD (encoding helicase II) genes have been del...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...
Previous studies have shown that MutL physically interacts with UvrD (DNA helicase II) (Hall, M. C.,...
Site-directed mutagenesis has been employed to address the functional significance of the highly con...
A site-directed mutation in motif IV of Escherichia coli DNA helicase II (UvrD) was generated to exa...
To address the functional significance of motif III in Escherichia coli DNA helicase II, the conserv...
Biosynthetic errors and DNA damage introduce mismatches and lesions in DNA that can lead to mutation...
The role of the C terminus of Escherichia coli DNA helicase II (UvrD), a region outside the conserve...
The loss of DNA helicase II (UvrD) in Escherichia coli results in sensitivity to UV light and increa...
Escherichia coli helicase II has been purified to near homogeneity from cells harboring a multicopy ...
Helicases are thought to function as oligomers (generally dimers or hexamers). Here we demonstrate t...
DNA helicases use energy derived from nucleoside 5′-triphosphate hydrolysis to catalyze the separati...
DNA helicase II is a well-characterized Escherichia coli enzyme capable of unwinding duplex DNA and ...
Helicase I has been purified to greater than 95% homogeneity from an F+ strain of Escherichia coli, ...
Various mutations were introduced in a conserved helicase domain (motif VI) of the AddA subunit of t...
The Escherichia coli helD (encoding helicase IV) and uvrD (encoding helicase II) genes have been del...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...
Previous studies have shown that MutL physically interacts with UvrD (DNA helicase II) (Hall, M. C.,...