RecA family proteins, including bacterial RecA, archaeal RadA, and eukaryotic Dmc1 and Rad51, mediate homologous recombination, a reaction essential for maintaining genome integrity. In the presence of ATP, these proteins bind a single-strand DNA to form a right-handed nucleoprotein filament, which catalyzes pairing and strand exchange with a homologous double-stranded DNA (dsDNA), by as-yet unknown mechanisms. We recently reported a structure of RadA left-handed helical filament, and here present three new structures of RadA left-handed helical filaments. Comparative structural analysis between different RadA/Rad51 helical filaments reveals that the N-terminal domain (NTD) of RadA/Rad51, implicated in dsDNA binding, is highly flexible. We ...
AbstractYeast RAD51 gene functions in genetic recombination and DNA double-strand break repair. In v...
DNA recombinases (RecA in bacteria, Rad51 in eukarya and RadA in archaea) catalyse strand exchange b...
Homologous recombination is essential for repair of DNA double-strand breaks. Central to this proces...
RecA family proteins engage in an ATP-dependent DNA strand exchange reaction that includes a ssDNA n...
SummaryProteins in the RecA/RadA/Rad51 family form helical filaments on DNA that function in homolog...
Homologous recombinational repair is an essential mechanism for repair of double-strand breaks in DN...
Homologous recombination is a universal mechanism for repairing DNA double strand breaks (DSBs) and ...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
textabstractRecombinase proteins assembled into helical filaments on DNA are believed to be the cata...
Human RAD51 is a key protein in the repair of DNA by homologous recombination. Its assembly onto DNA...
Proteins that catalyse homologous recombination have been identified in all living organisms and are...
AbstractThe crystal structure of the E. coli RecA protein was solved more than 10 years ago, but it ...
AbstractYeast RAD51 gene functions in genetic recombination and DNA double-strand break repair. In v...
DNA recombinases (RecA in bacteria, Rad51 in eukarya and RadA in archaea) catalyse strand exchange b...
Homologous recombination is essential for repair of DNA double-strand breaks. Central to this proces...
RecA family proteins engage in an ATP-dependent DNA strand exchange reaction that includes a ssDNA n...
SummaryProteins in the RecA/RadA/Rad51 family form helical filaments on DNA that function in homolog...
Homologous recombinational repair is an essential mechanism for repair of double-strand breaks in DN...
Homologous recombination is a universal mechanism for repairing DNA double strand breaks (DSBs) and ...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
<p><b>Copyright information:</b></p><p>Taken from "Crystal structure of the left-handed archaeal Rad...
textabstractRecombinase proteins assembled into helical filaments on DNA are believed to be the cata...
Human RAD51 is a key protein in the repair of DNA by homologous recombination. Its assembly onto DNA...
Proteins that catalyse homologous recombination have been identified in all living organisms and are...
AbstractThe crystal structure of the E. coli RecA protein was solved more than 10 years ago, but it ...
AbstractYeast RAD51 gene functions in genetic recombination and DNA double-strand break repair. In v...
DNA recombinases (RecA in bacteria, Rad51 in eukarya and RadA in archaea) catalyse strand exchange b...
Homologous recombination is essential for repair of DNA double-strand breaks. Central to this proces...