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The overexpression of specialized DNA polymerases in cancer
Mark R Albertella1, Alan Lau, Mark J O'Connor
1KuDOS Pharmaceuticals Limited, 327 Cambridge Science Park, Milton Road, Cambridge CB4 OWG, UK.
Abstract:
Specialized DNA polymerases are required to bypass DNA damage lesions that would otherwise cause replication arrest and cell death. When operating on non-canonical templates, such as undamaged DNA or on non-cognate lesions, these polymerases exhibit considerably reduced fidelity, resulting in the generation of mutations. Ectopic overexpression of these polymerases can also lead to an increased mutation rate and an enhanced capability of DNA repair, suggesting that they could potentially act as oncogenes if they were overexpressed in cancers. Here, we examine expression patterns of DNA polymerases in matched normal and tumor samples from a diverse range of tissues. As well as investigating the specialized polymerases beta, lambda, iota and kappa, we also investigate the expression of the replicative polymerases alpha, delta and epsilon. The data presented provide evidence for the overexpression of specialized polymerases in tumors, with more than 45% of the 68 tumor samples studied demonstrating greater than two-fold enhanced expression of at least one specialized polymerase. Of particular note, DNA polymerase beta (pol beta) was found to be overexpressed at both the mRNA and protein level in approximately one third of all tumor types studied, with overexpression being particularly frequent in uterus, ovary, prostate and stomach samples. Pols lambda, and iota were also found to be overexpressed to a significant extent in a range of tumor types, albeit less frequently than pol beta. In contrast, pol kappa was rarely found to be overexpressed in tumors but was found to be commonly underexpressed in many samples. Downregulation of pol beta expression by siRNA resulted in an increased sensitivity to the chemotherapeutic agent cisplatin, suggesting a role for this polymerase in providing tolerance to cisplatin-induced damage. These observations suggest that specialised DNA polymerases, and particularly pol beta, could be considered both as caretaker genes altered during tumorigenesis, and as potential drug targets to sensitise tumors to chemotherapy.
Insights
Specialized DNA polymerases, especially DNA polymerase beta (pol beta), are overexpressed in many tumors. This suggests pol beta could be a drug target to increase chemotherapy sensitivity.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Specialized DNA polymerases are crucial for bypassing DNA damage during replication.
- These polymerases can exhibit low fidelity on non-canonical templates, leading to mutations.
- Ectopic overexpression may link them to oncogenesis and DNA repair enhancement.
Purpose of the Study:
- To investigate the expression patterns of specialized and replicative DNA polymerases in normal versus tumor tissues.
- To identify specific DNA polymerases that are overexpressed in various cancer types.
- To explore the potential role of DNA polymerase beta (pol beta) in chemotherapy resistance.
Main Methods:
- Analysis of matched normal and tumor tissue samples from diverse origins.
- Quantitative assessment of mRNA and protein expression levels for DNA polymerases beta, lambda, iota, kappa, alpha, delta, and epsilon.
- siRNA-mediated downregulation of pol beta expression followed by sensitivity assays to cisplatin.
Main Results:
- Overexpression of at least one specialized DNA polymerase was observed in over 45% of 68 tumor samples.
- DNA polymerase beta (pol beta) was overexpressed in about one-third of tumor types, notably in uterus, ovary, prostate, and stomach cancers.
- DNA polymerases lambda and iota showed significant overexpression in various tumors, while pol kappa was often underexpressed.
- siRNA-induced downregulation of pol beta increased sensitivity to cisplatin, indicating its role in DNA damage tolerance.
Conclusions:
- Specialized DNA polymerases, particularly pol beta, are frequently overexpressed in tumors.
- Pol beta overexpression may contribute to tumor development and chemoresistance.
- Targeting pol beta could be a therapeutic strategy to sensitize tumors to chemotherapy.
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