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Updated: Aug 22, 2026

Cell-Free DNA Integrity Analysis in Urine Samples
Published on: January 5, 2017
Aberrations of the Chk2 tumour suppressor in advanced urinary bladder cancer
Jirina Bartkova1, Per Guldberg, Kirsten Grønbaek
1Institute of Cancer Biology, Danish Cancer Society, Strandboulevarden 49, Copenhagen DK-2100, Denmark.
Abstract:
Checkpoint kinase 2 (Chk2) is a tumour suppressor and signal transducer in genome integrity checkpoints that coordinate cell-cycle progression with DNA repair or cell death in response to DNA damage. Defects of Chk2 occur in subsets of diverse sporadic malignancies and predispose to several types of hereditary carcinomas. However, the status of Chk2 in tumours of the urinary bladder remains unknown. Here, we report that among 58 advanced (grade T2-T4) human bladder carcinomas, immunohistochemical analysis revealed tumour-specific reduction or lack of Chk2 protein in 6 (10.3%) cases. Genetic analysis of the latter subset showed that a Chk2-negative carcinoma #668 harboured a truncating mutation 1100delC, in one Chk2 allele and loss of the corresponding second allele. The 1100delC mutation was also found in the germ line of this patient. Sequencing of TP53 in tumour #668 identified two missense mutations. Furthermore, the vast majority of the tumours showed 'unscheduled' activatory phosphorylation on Thr68 of Chk2 in the absence of any DNA-damaging treatment. Our results indicate that the otherwise dormant DNA damage signal transducer Chk2 is aberrantly and constitutively activated in invasive urinary bladder carcinomas, and that such likely proapoptotic checkpoint signalling can be disabled by inactivation of Chk2 and/or p53 tumour suppressors in subsets of these tumours.
Insights
Checkpoint kinase 2 (Chk2) acts as a tumor suppressor. This study found Chk2 is aberrantly activated in bladder cancers, and its inactivation, along with p53 mutations, disables this critical signaling pathway.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Checkpoint kinase 2 (Chk2) is a crucial tumor suppressor involved in DNA damage response.
- Defects in Chk2 are observed in various cancers, but its role in bladder carcinoma is unknown.
Purpose of the Study:
- To investigate the status and role of Chk2 in human bladder carcinomas.
- To determine if Chk2 inactivation contributes to bladder tumor development.
Main Methods:
- Immunohistochemical analysis of Chk2 protein in 58 advanced bladder carcinomas.
- Genetic analysis including sequencing of Chk2 and TP53 genes.
- Assessment of Chk2 phosphorylation at Thr68.
Main Results:
- Reduced or absent Chk2 protein was found in 10.3% of bladder tumors.
- A truncating Chk2 mutation (1100delC) and TP53 mutations were identified in a Chk2-negative tumor.
- Aberrant, constitutive phosphorylation of Chk2 at Thr68 was observed in most tumors.
Conclusions:
- Chk2 is aberrantly and constitutively activated in invasive bladder carcinomas.
- Inactivation of Chk2 and/or p53 tumor suppressors can disable checkpoint signaling in a subset of these tumors.
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