SummaryThe DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform allosteric interactions between recombinase proteins and their DNA substrates. To study these mechanistic aspects of homologous recombination, we produced functional fluorescent human RAD51 recombinase and visualized recombinase interactions with single DNA molecules in both static and dynamic conditions. We observe that RAD51 nucleates filament formation at multiple sites on double-stranded DNA. This avid nucleation results in multiple RAD51 filament segments along a DNA molecule. Analysis of fluorescent filament patch size and filament kinks from scanning force microscopy (SFM) images indicate nucleation occurs minimally once every 500...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
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...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
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 central catalyst in eukaryotic ATP-dependent homologous recombination consists of RAD51 proteins...
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 protein...
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 ...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
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...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
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 central catalyst in eukaryotic ATP-dependent homologous recombination consists of RAD51 proteins...
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 protein...
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 ...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...
International audienceGenomic integrity depends on the RecA/RAD51 protein family. Discovered over fi...