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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
Differential Effects of Clinically Relevant N- versus C-Terminal Truncating CDKN1A Mutations on Cisplatin Sensitivity
Rahmat K Sikder1, Moataz Ellithi1, Robert N Uzzo1
1Molecular Therapeutics Program, Fox Chase Cancer Center, Philadelphia, Pennsylvania.
Abstract:
Muscle-invasive bladder cancer (MIBC) frequently harbors mutations in the CDKN1A gene, which encodes the tumor suppressor protein p21, with the majority of alterations truncating the peptide. The effect of these mutations is poorly understood. We hypothesized that after DNA-damaging events, cells deficient in p21 would be unable to halt the cell cycle and efficiently repair DNA damage, thus proceeding down the apoptotic pathway. We used synthetic CRISPR guide RNAs to ablate the whole peptide (sg12, targeting the 12th amino acid) or the C-terminal proliferating cell nuclear antigen (PCNA)-binding domain (sg109) to mimic different p21-truncating mutations compared with a negative control (sgGFP) in bladder cancer cell lines. Loss of detectable p21 and a stable truncated p21 peptide were identified in sg12 and sg109 single-cell clones, respectively. We found that p21-deficient cells (sg12) were sensitized to cisplatin, while cells harboring distally truncated p21 (sg12 clones) demonstrated enhanced cisplatin resistance. p21-deficient sg12 clones demonstrated less repair of DNA-platinum adducts and increased γ-H2AX foci after cisplatin exposure, suggesting there was persistent DNA damage after p21 loss. p21-deficient sg12 clones were also unable to prevent the activation of CDK1 after DNA damage, and therefore, continued through the cell cycle, resulting in replication fork collapse, potentially explaining the observed cisplatin sensitization. sg109 clones were neither unable to sequester PCNA nor localize p21 to the nucleus after DNA damage, potentially explaining the chemoresistant phenotype. Our findings suggest that different CDKN1A truncations have different and perhaps disparate biology, and that there may be a duality of effect on cisplatin sensitivity depending on mutation context. IMPLICATIONS: Some truncating CDKN1A mutations generate a retained peptide that may have neomorphic functions and affect cisplatin sensitivity in patients with bladder cancer.
Insights
Mutations in the CDKN1A gene (p21) impact bladder cancer cell response to cisplatin. Loss of p21 sensitizes cells, while truncated p21 can confer resistance, suggesting context-dependent effects.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Muscle-invasive bladder cancer (MIBC) often has mutations in the CDKN1A gene, encoding the tumor suppressor p21.
- The functional impact of p21-truncating mutations in MIBC remains poorly understood.
- p21 is crucial for cell cycle arrest and DNA repair following DNA damage.
Purpose of the Study:
- To investigate the differential effects of p21 loss versus C-terminal truncation on bladder cancer cell response to cisplatin.
- To elucidate the mechanisms underlying altered chemosensitivity in response to specific p21 mutations.
Main Methods:
- Utilized CRISPR guide RNAs (sg12 for whole p21 ablation, sg109 for C-terminal domain deletion) in bladder cancer cell lines.
- Assessed p21 expression, DNA repair (γ-H2AX foci, DNA-platinum adducts), cell cycle progression (CDK1 activation), and PCNA binding.
- Evaluated sensitivity and resistance to cisplatin treatment.
Main Results:
- p21-deficient cells (sg12) showed increased cisplatin sensitization, reduced DNA repair, and unrepressed CDK1 activation, leading to replication fork collapse.
- Cells with truncated p21 (sg109) exhibited cisplatin resistance, with impaired PCNA sequestration and nuclear localization of p21.
- Different CDKN1A truncations demonstrate distinct biological consequences and can lead to opposing effects on cisplatin sensitivity.
Conclusions:
- CDKN1A truncating mutations in MIBC have disparate biological effects.
- The specific nature of p21 truncation influences DNA repair, cell cycle control, and ultimately, cisplatin sensitivity.
- Retained truncated p21 peptides may possess neomorphic functions impacting treatment outcomes in bladder cancer.
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