Sumoylation is an important enhancer of responses to DNA replication stress and the SUMO-targeted ubiquitin E3 ligase RNF4 regulates these responses by ubiquitylation of sumoylated DNA damage response factors. The specific targets and functional consequences of RNF4 regulation in response to replication stress, however, have not been fully characterized. Here we demonstrated that RNF4 is required for the restart of DNA replication following prolonged hydroxyurea (HU)-induced replication stress. Contrary to its role in repair of γ-irradiation-induced DNA double-strand breaks (DSBs), our analysis revealed that RNF4 does not significantly impact recognition or repair of replication stress-associated DSBs. Rather, using DNA fiber assays, we fou...
<p>Both RNF4 and KAP1 play critical roles in the response to DNA double-strand breaks (DSBs), but th...
DNA-protein crosslinks (DPCs) obstruct essential DNA transactions, posing a serious threat to genome...
During S phase, replication forks can encounter several obstacles that lead to fork stalling, which ...
Unrepaired DNA double-strand breaks (DSBs) cause genetic instability that leads to malignant transfo...
Here we demonstrate that RNF4, a highly conserved small ubiquitin-like modifier (SUMO)-targeted ubiq...
The human genome is under constant threat from sources of damage and stress. Improper resolution of ...
Limiting the levels of homologous recombination (HR) that occur at sites of DNA damage is a major ro...
BLM is sumoylated in response to replication stress. We have studied the role of BLM sumoylation in ...
In response to replication stress cells activate the intra-S checkpoint, induce DNA repair pathways,...
NSMCE2 is an E3 SUMO ligase and a subunit of the SMC5/6 complex that associates with the replication...
Aiming at better understanding the role of non-canonical ubiquitin-mediated events in the control of...
NSMCE2 is an E3 SUMO ligase and a subunit of the SMC5/6 complex that associates with the replication...
The gene mutated in Bloom's syndrome, BLM, is important in the repair of damaged replication forks, ...
SUMO and ubiquitin play important roles in the response of cells to DNA damage. These pathways are l...
The post-translational modification of DNA repair and checkpoint proteins by ubiquitin and small ubi...
<p>Both RNF4 and KAP1 play critical roles in the response to DNA double-strand breaks (DSBs), but th...
DNA-protein crosslinks (DPCs) obstruct essential DNA transactions, posing a serious threat to genome...
During S phase, replication forks can encounter several obstacles that lead to fork stalling, which ...
Unrepaired DNA double-strand breaks (DSBs) cause genetic instability that leads to malignant transfo...
Here we demonstrate that RNF4, a highly conserved small ubiquitin-like modifier (SUMO)-targeted ubiq...
The human genome is under constant threat from sources of damage and stress. Improper resolution of ...
Limiting the levels of homologous recombination (HR) that occur at sites of DNA damage is a major ro...
BLM is sumoylated in response to replication stress. We have studied the role of BLM sumoylation in ...
In response to replication stress cells activate the intra-S checkpoint, induce DNA repair pathways,...
NSMCE2 is an E3 SUMO ligase and a subunit of the SMC5/6 complex that associates with the replication...
Aiming at better understanding the role of non-canonical ubiquitin-mediated events in the control of...
NSMCE2 is an E3 SUMO ligase and a subunit of the SMC5/6 complex that associates with the replication...
The gene mutated in Bloom's syndrome, BLM, is important in the repair of damaged replication forks, ...
SUMO and ubiquitin play important roles in the response of cells to DNA damage. These pathways are l...
The post-translational modification of DNA repair and checkpoint proteins by ubiquitin and small ubi...
<p>Both RNF4 and KAP1 play critical roles in the response to DNA double-strand breaks (DSBs), but th...
DNA-protein crosslinks (DPCs) obstruct essential DNA transactions, posing a serious threat to genome...
During S phase, replication forks can encounter several obstacles that lead to fork stalling, which ...