Rad52 is a key player in homologous recombination (HR), a DNA repair pathway that is dedicated to double strand breaks repair and recovery of perturbed replication forks. Here we show that fission yeast Rad52 homologue is phosphorylated when S phase cells are exposed to ROS inducers such as ultraviolet A radiation or hydrogen peroxide, but not to ultraviolet C or camptothecin. Phosphorylation does not depend on kinases Chk1, Rad3, Tel1 or Cdc2, but depends on a functional stress activated protein kinase (SAPK) pathway and can be partially prevented by anti-oxidant treatment. Indeed, cells lacking Sty1, the major fission yeast MAP kinase of the SAPK pathway, do not display Rad52 phosphorylation and have UVA induced Rad52 foci that persist lo...
Le génome est sans cesse menacé dans sa structure par des stress génotoxiques d’origine endogène (st...
The cellular responses to DNA damage are complex and include direct DNA repair pathways that remove ...
DNA double-strand breaks (DSBs) can cause chromosomal rearrangements and extensive loss of heterozyg...
Rad52 is a key protein in homologous recombination (HR), a DNA repair pathway dedicated to double st...
Rad52 is a key protein in homologous recombination (HR), a DNA repair pathway dedicated to double st...
Homologous recombination is important for the repair of double-strand breaks and daughter strand gap...
To study the role of Rad50 in the DNA damage response, we cloned and deleted the Schizosaccharo myce...
The DNA repair enzyme polynucleotide kinase/phosphatase (PNKP) protects genome integrity by restorin...
<div><p>The DNA repair enzyme polynucleotide kinase/phosphatase (PNKP) protects genome integrity by ...
Homologous recombination is important for the repair of double-strand breaks and daughter strand gap...
Exposure of eukaryotic cells to agents that generate DNA damage results in transient arrest of progr...
The dependence of cell-cycle progression on the integrity of the genome has been described as checkp...
Nucleotide synthesis is a universal response to DNA damage, but how this response facilitates DNA re...
Rad52 is a key factor for homologous recombination (HR) in yeast. Rad52 helps assemble Rad51-ssDNA n...
When inappropriate DNA structures arise, they are sensed by DNA structure-dependent checkpoint pathw...
Le génome est sans cesse menacé dans sa structure par des stress génotoxiques d’origine endogène (st...
The cellular responses to DNA damage are complex and include direct DNA repair pathways that remove ...
DNA double-strand breaks (DSBs) can cause chromosomal rearrangements and extensive loss of heterozyg...
Rad52 is a key protein in homologous recombination (HR), a DNA repair pathway dedicated to double st...
Rad52 is a key protein in homologous recombination (HR), a DNA repair pathway dedicated to double st...
Homologous recombination is important for the repair of double-strand breaks and daughter strand gap...
To study the role of Rad50 in the DNA damage response, we cloned and deleted the Schizosaccharo myce...
The DNA repair enzyme polynucleotide kinase/phosphatase (PNKP) protects genome integrity by restorin...
<div><p>The DNA repair enzyme polynucleotide kinase/phosphatase (PNKP) protects genome integrity by ...
Homologous recombination is important for the repair of double-strand breaks and daughter strand gap...
Exposure of eukaryotic cells to agents that generate DNA damage results in transient arrest of progr...
The dependence of cell-cycle progression on the integrity of the genome has been described as checkp...
Nucleotide synthesis is a universal response to DNA damage, but how this response facilitates DNA re...
Rad52 is a key factor for homologous recombination (HR) in yeast. Rad52 helps assemble Rad51-ssDNA n...
When inappropriate DNA structures arise, they are sensed by DNA structure-dependent checkpoint pathw...
Le génome est sans cesse menacé dans sa structure par des stress génotoxiques d’origine endogène (st...
The cellular responses to DNA damage are complex and include direct DNA repair pathways that remove ...
DNA double-strand breaks (DSBs) can cause chromosomal rearrangements and extensive loss of heterozyg...