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Published on: February 24, 2014
Xeroderma pigmentosum group a protein and chemotherapy resistance in human germ cell tumors
Friedemann Honecker1, Frank Mayer, Hans Stoop
1Department of Pathology, Laboratory for Experimental Patho-Oncology, Josephine Nefkens Institute, Erasmus MC, University Medical Center Rotterdam, Daniel den Hoed Cancer Center, Rotterdam, The Netherlands.
Abstract:
The exceptional sensitivity of germ cell tumors (GCTs) of adolescents and adults to chemotherapy, in particular to cisplatin, has been attributed to low levels of xeroderma pigmentosum group A protein (XPA), a crucial component of the nucleotide excision repair DNA repair pathway. In different types of solid tumors, resistance to cisplatin has been associated with enhanced expression of XPA. To assess the role of XPA levels in clinical sensitivity and resistance of GCTs to chemotherapy, immunohistochemistry was performed on tumor samples of both unselected patients before therapy and patients with fully documented clinical course before and after therapy. In the case of high XPA levels, fluorescent in situ hybridization was applied to assess the possibility of gene amplification. XPA protein levels were investigated by Western blot analysis after repeated exposure to cisplatin in different GCT-derived cell lines. Finally, XPA levels of both sensitive and cisplatin-resistant GCT cell lines were compared with cell lines derived from other neoplasms. We found that the presence of XPA protein as assessed by immunohistochemistry differs among the various histologies of GCTs. It is found more frequently and with a more homogenous staining pattern in histologic subtypes showing a more differentiated phenotype. Overall, no differences in the presence of XPA was observed between samples of tumors refractory or sensitive to chemotherapy. No XPA gene amplification was found. Interestingly, all tumors resected in relapse after chemotherapy in the refractory group stained positive for XPA. However, XPA was not induced by repeated courses of sublethal doses of cisplatin in GCT-derived cell lines in vitro, and no correlation between XPA protein levels and sensitivity to cisplatin in three GCT-derived cell lines was observed. We therefore conclude that XPA does not play a critical role in overall treatment resistance of GCTs.
Insights
Xeroderma pigmentosum group A protein (XPA) levels do not appear to be critical for chemotherapy resistance in germ cell tumors (GCTs). Studies found no correlation between XPA presence and treatment outcomes in GCT patients or cell lines.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Germ cell tumors (GCTs) are highly sensitive to chemotherapy, particularly cisplatin.
- This sensitivity has been linked to low levels of xeroderma pigmentosum group A protein (XPA), a key DNA repair enzyme.
- Conversely, cisplatin resistance in other cancers is often associated with increased XPA expression.
Purpose of the Study:
- To investigate the role of XPA protein levels in the clinical sensitivity and resistance of GCTs to chemotherapy.
- To determine if XPA expression or gene amplification correlates with cisplatin resistance in GCTs.
Main Methods:
- Immunohistochemistry on GCT tumor samples before and after therapy.
- Fluorescent in situ hybridization to detect XPA gene amplification.
- Western blot analysis of GCT cell lines exposed to cisplatin.
- Comparison of XPA levels in GCT cell lines versus other cancer cell lines.
Main Results:
- XPA protein presence varied among GCT histologies, being more common in differentiated subtypes.
- No significant difference in XPA presence was found between chemotherapy-sensitive and refractory GCTs.
- No XPA gene amplification was detected.
- XPA was not induced by cisplatin in vitro, and no correlation with cisplatin sensitivity was observed in GCT cell lines.
- Tumors resected in relapse after chemotherapy in the refractory group consistently stained positive for XPA.
Conclusions:
- XPA does not appear to play a critical role in the overall treatment resistance of GCTs.
- The presence of XPA in relapsed refractory tumors suggests a complex resistance mechanism not solely dependent on XPA levels.
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