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The Use of Reverse Phase Protein Arrays RPPA to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Nucleotide excision repair deficiency is a targetable therapeutic vulnerability in clear cell renal cell carcinoma
Aurel Prosz1, Haohui Duan2,3, Viktoria Tisza4,5
1Danish Cancer Society Research Center, Copenhagen, Denmark.
Purpose:
Due to a demonstrated lack of DNA repair deficiencies, clear cell renal cell carcinoma (ccRCC) has not benefitted from targeted synthetic lethality-based therapies. We investigated whether nucleotide excision repair (NER) deficiency is present in an identifiable subset of ccRCC cases that would render those tumors sensitive to therapy targeting this specific DNA repair pathway aberration.
Experimental Design:
We used functional assays that detect UV-induced 6-4 pyrimidine-pyrimidone photoproducts to quantify NER deficiency in ccRCC cell lines. We also measured sensitivity to irofulven, an experimental cancer therapeutic agent that specifically targets cells with inactivated transcription-coupled nucleotide excision repair (TC-NER). In order to detect NER deficiency in clinical biopsies, we assessed whole exome sequencing data for the presence of an NER deficiency associated mutational signature previously identified in ERCC2 mutant bladder cancer.
Results:
Functional assays showed NER deficiency in ccRCC cells. Irofulven sensitivity increased in some cell lines. Prostaglandin reductase 1 (PTGR1), which activates irofulven, was also associated with this sensitivity. Next generation sequencing data of the cell lines showed NER deficiency-associated mutational signatures. A significant subset of ccRCC patients had the same signature and high PTGR1 expression.
Conclusions:
ccRCC cell line based analysis showed that NER deficiency is likely present in this cancer type. Approximately 10% of ccRCC patients in the TCGA cohort showed mutational signatures consistent with ERCC2 inactivation associated NER deficiency and also substantial levels of PTGR1 expression. These patients may be responsive to irofulven, a previously abandoned anticancer agent that has minimal activity in NER-proficient cells.
Insights
Clear cell renal cell carcinoma (ccRCC) may have nucleotide excision repair (NER) deficiencies. This finding suggests a subset of ccRCC patients could benefit from therapies targeting NER, like irofulven.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Clear cell renal cell carcinoma (ccRCC) typically lacks DNA repair deficiencies, limiting synthetic lethality treatment options.
- Investigating nucleotide excision repair (NER) deficiency in ccRCC may identify a subset sensitive to targeted therapies.
Approach:
- Functional assays quantified NER deficiency in ccRCC cell lines using UV-induced photoproduct detection.
- Sensitivity to irofulven, a transcription-coupled NER (TC-NER) targeting agent, was assessed.
- Whole exome sequencing analyzed clinical ccRCC biopsies for NER deficiency mutational signatures.
Key Points:
- Functional assays confirmed NER deficiency in ccRCC cells, with some lines showing increased sensitivity to irofulven.
- Prostaglandin reductase 1 (PTGR1), an irofulven activator, correlated with drug sensitivity.
- Mutational signatures associated with NER deficiency were detected in cell lines and a subset of ccRCC patients.
Conclusions:
- NER deficiency is likely present in ccRCC, with approximately 10% of patients in the TCGA cohort exhibiting relevant mutational signatures and high PTGR1 expression.
- This subset of ccRCC patients may respond to irofulven, an anticancer agent with limited activity in NER-proficient tumors.
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