The timely activation of homologous recombination is essential for the maintenance of genome stability, in which the RAD51 recombinase plays a central role. Biochemically, human RAD51 binds to both single-stranded DNA (ssDNA) and double-stranded DNA (dsDNA) with similar affinities, raising a key conceptual question: how does it discriminate between them? In this study, we tackled this problem by systematically assessing RAD51 binding kinetics on ssDNA and dsDNA differing in length and flexibility using surface plasmon resonance. By fitting detailed polymerisation models informed by our experimental datasets, we show that RAD51 is a mechano-sensor that exhibits a larger polymerisation rate constant on flexible ssDNA compared to rigid ssDNA o...
International audienceThe human recombinase hRad51 is a key protein for the maintenance of genome in...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
The timely activation of homologous recombination is essential for the maintenance of genome stabili...
The timely activation of homologous recombination (HR) is essential for the maintenance of genome s...
Human RAD52 promotes annealing of complementary single-stranded DNA (ssDNA). In-depth knowledge of R...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
Human RAD51 is a key protein in the repair of DNA by homologous recombination. Its assembly onto DNA...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
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...
Rad51 protein is a well known protagonist of homologous recombination in eukaryotic cells. Rad51 pol...
S-DNA (stretched DNA) is an elongated base-paired DNA conformation under high tension. Because the R...
International audienceThe human recombinase hRad51 is a key protein for the maintenance of genome in...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...
The timely activation of homologous recombination is essential for the maintenance of genome stabili...
The timely activation of homologous recombination (HR) is essential for the maintenance of genome s...
Human RAD52 promotes annealing of complementary single-stranded DNA (ssDNA). In-depth knowledge of R...
Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow t...
The human DNA repair protein RAD51 is the crucial component of helical nucleoprotein filaments that ...
Human RAD51 is a key protein in the repair of DNA by homologous recombination. Its assembly onto DNA...
AbstractNucleoprotein filament formation by recombinases is central to homologous recombination. To ...
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...
Rad51 protein is a well known protagonist of homologous recombination in eukaryotic cells. Rad51 pol...
S-DNA (stretched DNA) is an elongated base-paired DNA conformation under high tension. Because the R...
International audienceThe human recombinase hRad51 is a key protein for the maintenance of genome in...
The DNA strand-exchange reactions defining homologous recombination involve transient, nonuniform al...
International audienceHuman Rad51 (hRad51), the protein central to DNA pairing and strand exchange d...