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Updated: Dec 17, 2025

Comparing Metastatic Clear Cell Renal Cell Carcinoma Model Established in Mouse Kidney and on Chicken Chorioallantoic Membrane
Published on: February 8, 2020
DNA damage repair pathway alterations in metastatic clear cell renal cell carcinoma and implications on systemic
Yasser Ged1, Joshua L Chaim2, Renzo G DiNatale3
1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
Background:
Loss-of-function alterations in DNA damage repair (DDR) genes are associated with human tumorigenesis and may determine benefit from immune-oncology (I/O) agents as shown in colon cancer. However, biologic significance and relevance to I/O in metastatic clear cell RCC (ccRCC) are unknown.
Methods:
Genomic data and treatment outcomes were retrospectively collected for patients with metastatic ccRCC. Tumor and germline DNA were subject to targeted next generation sequencing across >400 genes of interest, including 34 DDR genes. Patients were dichotomized according to underlying DDR gene alteration into (1) deleterious DDR gene alterations present (Del DDR); (2) wild-type (WT) and variants of unknown significance (VUS) DDR gene alterations present (WT/VUS DDR). Association between DDR status and therapeutic benefit was investigated separately for I/O and vascular endothelial growth factor (VEGF) tyrosine kinase inhibitor (TKI) therapy.
Results:
Del DDR were detected in 43/229 patients (19%). The most frequently altered genes were CHEK2 and ATM. Clonality analysis was performed in 27 somatic DDR mutations and 17 were clonal (63%). For patients with I/O treatment, Del DDR status was associated with superior overall survival (log-rank p=0.049); after adjusting for International Metastatic Renal Cell Carcinoma Database Consortium risks and extent of prior therapy, the HR for Del DDR was 0.41 (95% CI: 0.14-1.14; p=0.09). No association was seen with VEGF-TKI treatment (log-rank p=0.903).
Conclusion:
Del DDR alterations are recurrent genomic events in patients with advanced RCC and were mostly clonal in this cohort. Loss-of-function events in these genes may affect outcome with I/O therapy in metastatic RCC, and these hypothesis-generating results deserve further study.
Insights
Deleterious DNA damage repair (DDR) gene alterations in metastatic clear cell renal cell carcinoma (ccRCC) are linked to better outcomes with immune-oncology (I/O) therapy. These findings suggest DDR status may predict I/O response in ccRCC patients.
Area of Science:
- Genomics
- Oncology
- Cancer Research
Background:
- Loss-of-function alterations in DNA damage repair (DDR) genes are implicated in human tumorigenesis.
- The role of DDR gene alterations in metastatic clear cell renal cell carcinoma (ccRCC) and their impact on immune-oncology (I/O) treatment efficacy remain unclear.
Purpose of the Study:
- To investigate the biological significance of DDR gene alterations in metastatic ccRCC.
- To determine the association between DDR gene alterations and therapeutic benefit from I/O and VEGF-TKI therapies in ccRCC.
Main Methods:
- Retrospective analysis of genomic data and treatment outcomes from metastatic ccRCC patients.
- Targeted next-generation sequencing of >400 genes, including 34 DDR genes, in tumor and germline DNA.
- Dichotomization of patients into deleterious DDR alterations (Del DDR) and wild-type/VUS DDR groups to assess treatment associations.
Main Results:
- Deleterious DDR alterations were identified in 19% of patients, with CHEK2 and ATM being the most frequently altered genes.
- Clonality analysis revealed that 63% of somatic DDR mutations were clonal.
- Del DDR status was associated with improved overall survival in patients receiving I/O therapy (log-rank p=0.049), but not with VEGF-TKI treatment (log-rank p=0.903).
Conclusions:
- Deleterious DDR alterations are recurrent and often clonal genomic events in advanced ccRCC.
- Loss-of-function DDR events may influence patient outcomes with I/O therapy in metastatic ccRCC.
- These hypothesis-generating findings warrant further investigation into DDR status as a predictive biomarker for I/O therapy in ccRCC.
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