Escherichia coli RecA protein, in the presence of ATP or its analog adenosine 5'-[γ-thio]triphosphate, polymerizes on single-stranded DNA to form nucleoprotein filaments that can then bind to homologous sequences on duplex DNA. The three-stranded joint molecule formed as a result of this binding event is a key intermediate in general recombination. We have used affinity cleavage to examine this three-stranded joint by incorporating a single thymidine-EDTA•Fe (T*) into the oligonucleotide part of the filament. Our analysis of the cleavage patterns from the joint molecule reveals that the nucleoprotein filament binds in the minor groove of an extended Watson-Crick duplex
AbstractThe crystal structure of the E. coli RecA protein was solved more than 10 years ago, but it ...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...
Escherichia coli RecA protein, in the presence of ATP or its analog adenosine 5'-[γ-thio]triphosphat...
Escherichia coli RecA protein, in the presence of ATP or its analog adenosine 5'-[γ-thio]triphosphat...
Escherichia coli RecA protein promotes strand exchange between two homologous DNAs by polymerizing o...
When RecA protein, in the form of a nucleoprotein filament containing circular single-stranded DNA (...
In the pairing reaction between circular gapped and fully duplex DNA, RecA protein first polymerizes...
The RecA protein of Escherichia coli forms a nucleoprotein filament that promotes homologous recogni...
Previous work has shown that triplex DNA is an intermediate in homologous pairing and strand exchang...
Homologous recombination, a process ubiquitous to most living cells, involves the exchange of strand...
In the presence of ATP, recA protein forms a presynaptic complex with single-stranded DNA that is an...
Whereas complementary strands of DNA recognize one another by forming Watson-Crick bae pairs, the wa...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
During the directional strand exchange that is promoted by RecA protein between linear duplex DNA an...
AbstractThe crystal structure of the E. coli RecA protein was solved more than 10 years ago, but it ...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...
Escherichia coli RecA protein, in the presence of ATP or its analog adenosine 5'-[γ-thio]triphosphat...
Escherichia coli RecA protein, in the presence of ATP or its analog adenosine 5'-[γ-thio]triphosphat...
Escherichia coli RecA protein promotes strand exchange between two homologous DNAs by polymerizing o...
When RecA protein, in the form of a nucleoprotein filament containing circular single-stranded DNA (...
In the pairing reaction between circular gapped and fully duplex DNA, RecA protein first polymerizes...
The RecA protein of Escherichia coli forms a nucleoprotein filament that promotes homologous recogni...
Previous work has shown that triplex DNA is an intermediate in homologous pairing and strand exchang...
Homologous recombination, a process ubiquitous to most living cells, involves the exchange of strand...
In the presence of ATP, recA protein forms a presynaptic complex with single-stranded DNA that is an...
Whereas complementary strands of DNA recognize one another by forming Watson-Crick bae pairs, the wa...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
During the directional strand exchange that is promoted by RecA protein between linear duplex DNA an...
AbstractThe crystal structure of the E. coli RecA protein was solved more than 10 years ago, but it ...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...
To further characterize the role of RecA protein-DNA filaments in general recombination and DNA repa...