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Published on: September 5, 2017
Differential role of RB in response to UV and IR damage
Emily E Bosco1, Erik S Knudsen
1Department of Cell Biology, Vontz Center for Molecular Studies, University of Cincinnati College of Medicine, Cincinnati, OH, USA.
Abstract:
The retinoblastoma tumor suppressor (RB) is functionally inactivated in the majority of cancers and is a critical mediator of DNA damage checkpoints. Despite the critical importance of RB function in tumor suppression, the coordinate impact of RB loss on the response to environmental and therapeutic sources of damage has remained largely unexplored. Here, we utilized a conditional knockout system to ablate RB in adult fibroblasts. This model system enabled us to investigate the temporal role of RB loss on cell cycle checkpoints and DNA damage repair following ultraviolet (UV) and ionizing radiation (IR) damage. We demonstrate that RB loss compromises rapid cell cycle arrest following UV and IR exposure in adult primary cells. Detailed kinetic analysis of the checkpoint response revealed that disruption of the checkpoint is concomitant with RB target gene deregulation, and is not simply a manifestation of chronic RB loss. RB loss had a differential effect upon repair of the major DNA lesions induced by IR and UV. Whereas RB did not affect resolution of DNA double-strand breaks, RB-deficient cells exhibited accelerated repair of pyrimidine pyrimidone photoproducts (6-4 PP). In parallel, this repair was coupled with enhanced expression of specific factors and the behavior of proliferating cell nuclear antigen (PCNA) recruitment to replication and repair foci. Thus, RB loss and target gene deregulation hastens the repair of specific lesions distinct from its ubiquitous role in checkpoint abrogation.
Insights
Loss of the retinoblastoma tumor suppressor (RB) impairs cell cycle arrest after DNA damage. However, RB deficiency accelerates the repair of specific UV-induced DNA lesions, distinct from its checkpoint role.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Cycle Regulation
Background:
- The retinoblastoma tumor suppressor (RB) is crucial for preventing cancer by regulating cell cycle checkpoints.
- RB inactivation is common in many cancers, but its impact on DNA damage response is not fully understood.
Purpose of the Study:
- To investigate the role of RB loss in cell cycle checkpoints and DNA repair following UV and ionizing radiation (IR) exposure.
- To explore the temporal effects of RB ablation in adult fibroblasts.
Main Methods:
- Utilized a conditional knockout system to ablate RB in adult primary fibroblasts.
- Analyzed cell cycle arrest kinetics and DNA repair pathways after UV and IR treatment.
Main Results:
- RB loss compromised rapid cell cycle arrest in response to UV and IR.
- RB deficiency accelerated the repair of UV-induced 6-4 photoproducts (6-4 PP), but not IR-induced double-strand breaks.
- Enhanced expression of repair factors and proliferating cell nuclear antigen (PCNA) recruitment were observed in RB-deficient cells.
Conclusions:
- RB loss disrupts cell cycle checkpoints but differentially impacts DNA repair pathways.
- Accelerated repair of specific DNA lesions in RB-deficient cells is linked to target gene deregulation.
- RB's role in tumor suppression involves both checkpoint control and modulation of DNA repair.
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