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Updated: Jul 28, 2026

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
Cdk5 activator-binding protein C53 regulates apoptosis induced by genotoxic stress via modulating the G2/M DNA damage
Hai Jiang1, Shouqing Luo, Honglin Li
1Children's Memorial Research Center, The Robert H. Lurie Comprehensive Cancer Center, The Feinberg School of Medicine and IGP Graduate Program, Northwestern University, Chicago, Illinois 60614, USA.
Abstract:
In response to DNA damage, the cellular decision of life versus death involves an intricate network of multiple factors that play critical roles in regulation of DNA repair, cell cycle, and cell death. DNA damage checkpoint proteins are crucial for maintaining DNA integrity and normal cellular functions, but they may also reduce the effectiveness of cancer treatment. Here we report the involvement of Cdk5 activator p35-binding protein C53 in regulation of apoptosis induced by genotoxic stress through modulating Cdk1-cyclin B1 function. C53 was originally identified as a Cdk5 activator p35-binding protein and a caspase substrate. Importantly, our results demonstrated that C53 deficiency conferred partial resistance to genotoxic agents such as etoposide and x-ray irradiation, whereas ectopic expression of C53 rendered cells susceptible to multiple genotoxins that usually trigger G(2)/M arrest. Furthermore, we found that Cdk1 activity was required for etoposide-induced apoptosis of HeLa cells. Overexpression of C53 promoted Cdk1 activity and nuclear accumulation of cyclin B1, whereas C53 deficiency led to more cytoplasmic retention of cyclin B1, suggesting that C53 acts as a pivotal player in modulating the G(2)/M DNA damage checkpoint. Finally, C53 and cyclin B1 co-localize and associate in vivo, indicating a direct role of C53 in regulating the Cdk1-cyclin B1 complex. Taken together, our results strongly indicate that in response to genotoxic stress, C53 serves as an important regulatory component of the G(2)/M DNA damage checkpoint. By overriding the G(2)/M checkpoint-mediated inhibition of Cdk1-cyclin B1 function, ectopic expression of C53 may represent a novel approach for chemo- and radio-sensitization of cancer cells.
Insights
The protein C53 regulates cell death in response to DNA damage by controlling the Cdk1-cyclin B1 complex. Overexpressing C53 may enhance cancer therapy by sensitizing cells to genotoxic stress.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Cellular responses to DNA damage involve complex regulatory networks controlling DNA repair, cell cycle progression, and cell death.
- While DNA damage checkpoint proteins maintain genomic integrity, they can also impede cancer treatment efficacy.
- The Cdk5 activator p35-binding protein C53, a known caspase substrate, is investigated for its role in genotoxic stress-induced apoptosis.
Purpose of the Study:
- To investigate the role of C53 in regulating apoptosis induced by genotoxic stress.
- To elucidate the mechanism by which C53 modulates the G(2)/M DNA damage checkpoint.
- To explore the potential of C53 as a target for enhancing cancer therapy.
Main Methods:
- Assessing cellular response to genotoxic agents (etoposide, X-ray irradiation) in C53-deficient and C53-overexpressing cells.
- Measuring Cyclin-Dependent Kinase 1 (Cdk1) activity and cyclin B1 localization.
- Investigating the in vivo interaction and co-localization of C53 and cyclin B1.
Main Results:
- C53 deficiency conferred partial resistance to genotoxic agents, while its ectopic expression increased susceptibility.
- C53 overexpression promoted Cdk1 activity and nuclear accumulation of cyclin B1, crucial for apoptosis.
- C53 deficiency resulted in cytoplasmic retention of cyclin B1, indicating impaired G(2)/M checkpoint regulation.
- C53 and cyclin B1 were found to co-localize and associate in vivo.
Conclusions:
- C53 is a key regulator of the G(2)/M DNA damage checkpoint, modulating Cdk1-cyclin B1 activity in response to genotoxic stress.
- C53 overrides G(2)/M checkpoint inhibition, promoting apoptosis.
- Ectopic expression of C53 shows potential as a novel strategy for chemo- and radio-sensitization in cancer treatment.
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