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CSF1R copy number changes, point mutations, and RNA and protein overexpression in renal cell carcinomas
Maria J Soares1, Mafalda Pinto, Rui Henrique
1Department of Genetics, Portuguese Oncology Institute, Porto, Portugal.
Abstract:
Renal cell carcinomas comprise a heterogeneous group of tumors. Of these, 80% are clear cell renal cell carcinomas, which are characterized by loss of 3p, often with concomitant gain of 5q22qter. Although VHL is considered the main target gene of the 3p deletions, none has been identified as the relevant target gene for the 5q gain. We have studied 75 consecutive kidney tumors and paired normal kidney samples to evaluate at the genomic and expression levels the tyrosine kinase genes CSF1R and PDGFRB as potential targets in this region. Our findings show that RNA expression of CSF1R, but not of PDGFRB, was significantly higher in clear cell renal cell carcinomas than in normal tissue samples, something that was corroborated at the protein level by immunohistochemistry. The CSF1R staining pattern in clear cell renal cell carcinomas was clearly different from that observed in other renal cell carcinomas, suggesting its potential usefulness in differential diagnosis. FISH analysis demonstrated whole chromosomal gain and relative CSF1R/PDGFRB copy number gain in clear cell renal cell carcinomas, which might contribute to CSF1R overexpression. Finally, one polymorphism and two novel mutations were identified in CSF1R in clear cell renal cell carcinoma patients. Our data allow us to conclude that CSF1R plays a relevant role in clear cell renal cell carcinoma carcinogenesis and raise the possibility that CSF1R may represent a future valuable therapeutic target in these patients.
Insights
Clear cell renal cell carcinoma shows increased CSF1R gene and protein expression due to 5q gain. This suggests CSF1R is a potential therapeutic target for kidney cancer.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Renal cell carcinomas (RCCs) are diverse tumors, with clear cell RCC (ccRCC) being the most common subtype.
- ccRCC is often associated with chromosomal abnormalities, including 3p deletions and 5q gain.
- The specific target gene for the 5q gain in ccRCC remains unidentified.
Purpose of the Study:
- To investigate the tyrosine kinase genes CSF1R and PDGFRB as potential target genes for the 5q gain in ccRCC.
- To evaluate the genomic and expression levels of CSF1R and PDGFRB in ccRCC.
Main Methods:
- Analysis of 75 kidney tumors and paired normal samples.
- RNA expression analysis.
- Protein expression analysis via immunohistochemistry.
- Fluorescence in situ hybridization (FISH) for copy number analysis.
- Mutation analysis of CSF1R.
Main Results:
- CSF1R RNA and protein expression were significantly higher in ccRCC compared to normal kidney tissue.
- CSF1R expression patterns differed between ccRCC and other RCC subtypes, indicating diagnostic potential.
- FISH analysis revealed whole chromosomal gain and increased CSF1R/PDGFRB copy number in ccRCC.
- One polymorphism and two novel mutations in CSF1R were identified in ccRCC patients.
Conclusions:
- CSF1R plays a significant role in the carcinogenesis of clear cell renal cell carcinoma.
- Increased CSF1R expression, potentially driven by 5q gain, is a key feature of ccRCC.
- CSF1R represents a potential future therapeutic target for clear cell renal cell carcinoma.
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