RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs its task by forming filaments on DNA. In this study we investigate the physical properties of RAD51 filaments formed on DNA using nanofluidic channels and fluorescence microscopy. Contrary to the bacterial ortholog RecA, RAD51 forms inhomogeneous filaments on long DNA in vitro, consisting of several protein patches. We demonstrate that a permanent “kink” in the filament is formed where two patches meet if the stretch of naked DNA between the patches is short. The kinks are readily seen in the present microscopy approach but would be hard to identify using conventional single DNA molecule techniques where the DNA is more stretched. We also dem...
During recombinational repair of double-stranded DNA breaks, RAD51 recombinase assembles as a nucleo...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
Using nanochannels, passivated with a lipid bilayer to avoid sticking of proteins, we study Rad51 fi...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
textabstractNucleoprotein filament formation by recombinases is central to homologous recombination....
During recombinational repair of double-stranded DNA breaks, RAD51 recombinase assembles as a nucleo...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
RAD51 is the key component of the homologous recombination pathway in eukaryotic cells and performs ...
International audienceRAD51 is the key component of the homologous recombination pathway in eukaryot...
Using nanochannels, passivated with a lipid bilayer to avoid sticking of proteins, we study Rad51 fi...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
textabstractNucleoprotein filament formation by recombinases is central to homologous recombination....
During recombinational repair of double-stranded DNA breaks, RAD51 recombinase assembles as a nucleo...
Recombinase proteins assembled into helical filaments on DNA are believed to be the catalytic core o...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...