The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that drive homologous recombination. The molecular mechanistic details of how this structure facilitates the requisite DNA strand rearrangements are not known but must involve dynamic interactions between RAD51 and DNA. Here, we report the real-time kinetics of human RAD51 filament assem-bly and disassembly on individual molecules of both single- and double-stranded DNA, as measured using magnetic tweezers. The relative rates of nucleation and filament extension are such that the observed filament formation consists of multiple nucleation events that are in competition with each other. For varying concentration of RAD51, a Hill coefficient of 4.3 ...
SummaryThe DNA strand-exchange reactions defining homologous recombination involve transient, nonuni...
The central catalyst in eukaryotic ATP- dependent homologous recombination consists of RAD51 protein...
To get mechanistic insight into the DNA strand-exchange reaction of homologous recombination, we sol...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
textabstractRecombinase proteins assembled into helical filaments on DNA are believed to be the cata...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
During recombinational repair of double-stranded DNA breaks, RAD51 recombinase assembles as a nucleo...
The central catalyst in eukaryotic ATP-dependent homologous recombination consists of RAD51 proteins...
SummaryThe DNA strand-exchange reactions defining homologous recombination involve transient, nonuni...
The central catalyst in eukaryotic ATP- dependent homologous recombination consists of RAD51 protein...
To get mechanistic insight into the DNA strand-exchange reaction of homologous recombination, we sol...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
textabstractRecombinase proteins assembled into helical filaments on DNA are believed to be the cata...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
During recombinational repair of double-stranded DNA breaks, RAD51 recombinase assembles as a nucleo...
The central catalyst in eukaryotic ATP-dependent homologous recombination consists of RAD51 proteins...
SummaryThe DNA strand-exchange reactions defining homologous recombination involve transient, nonuni...
The central catalyst in eukaryotic ATP- dependent homologous recombination consists of RAD51 protein...
To get mechanistic insight into the DNA strand-exchange reaction of homologous recombination, we sol...