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Updated: Jul 6, 2026

The Use of Reverse Phase Protein Arrays (RPPA) to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Identification of protein-coding and intronic noncoding RNAs down-regulated in clear cell renal carcinoma
Glauber Costa Brito1, Angela A Fachel, Andre Luiz Vettore
1Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, SP, Brazil.
Abstract:
The clear cell subtype of renal cell carcinoma (RCC) is the most lethal and prevalent cancer of the urinary system. To investigate the molecular changes associated with malignant transformation in clear cell RCC, the gene expression profiles of matched samples of tumor and adjacent non-neoplastic tissue were obtained from six patients. A custom-built cDNA microarray platform was used, comprising 2292 probes that map to exons of genes and 822 probes for noncoding RNAs mapping to intronic regions. Intronic transcription was detected in all normal and neoplastic renal tissues. A subset of 55 transcripts was significantly down-regulated in clear cell RCC relative to the matched nontumor tissue as determined by a combination of two statistical tests and leave-one-out patient cross-validation. Among the down-regulated transcripts, 49 mapped to untranslated or coding exons and 6 were intronic relative to known exons of protein-coding genes. Lower levels of expression of SIN3B, TRIP3, SYNJ2BP and NDE1 (P < 0.02), and of intronic transcripts derived from SND1 and ACTN4 loci (P < 0.05), were confirmed in clear cell RCC by Real-time RT-PCR. A subset of 25 transcripts was deregulated in additional six nonclear cell RCC samples, pointing to common transcriptional alterations in RCC irrespective of the histological subtype or differentiation state of the tumor. Our results indicate a novel set of tumor suppressor gene candidates, including noncoding intronic RNAs, which may play a significant role in malignant transformations of normal renal cells.
Insights
Researchers identified key gene expression changes in clear cell renal cell carcinoma (RCC). They discovered novel tumor suppressor gene candidates, including noncoding RNAs, crucial for understanding kidney cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Clear cell renal cell carcinoma (RCC) is the most lethal and common urinary system cancer.
- Understanding the molecular alterations in malignant transformation of clear cell RCC is critical.
Purpose of the Study:
- To investigate gene expression profiles in clear cell RCC.
- To identify molecular changes associated with malignant transformation.
- To discover novel tumor suppressor gene candidates, including noncoding RNAs.
Main Methods:
- Utilized a custom cDNA microarray platform with probes for coding and noncoding RNAs.
- Analyzed gene expression profiles from matched tumor and adjacent non-neoplastic renal tissues.
- Confirmed down-regulated transcript expression using Real-time RT-PCR.
Main Results:
- Identified 55 significantly down-regulated transcripts in clear cell RCC compared to normal tissue.
- Found 49 down-regulated transcripts mapped to exons and 6 to intronic regions.
- Confirmed lower expression of SIN3B, TRIP3, SYNJ2BP, NDE1, and intronic RNAs from SND1 and ACTN4 loci.
- Observed deregulation of 25 transcripts in nonclear cell RCC samples, suggesting common alterations.
Conclusions:
- Identified a novel set of potential tumor suppressor genes in clear cell RCC.
- Highlighted the role of noncoding intronic RNAs in renal cell carcinoma pathogenesis.
- These findings may offer new insights into the malignant transformation of renal cells.
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