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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
Identification of molecular tumor markers in renal cell carcinomas with TFE3 protein expression by RNA sequencing
Dorothee Pflueger1, Andrea Sboner, Martina Storz
1Institute of Surgical Pathology, University Hospital Zurich, Zurich, Switzerland ; Life Science Zurich PhD Program on Molecular and Translational Biomedicine, Zurich, Switzerland ; Competence Center for Systems Physiology and Metabolic Diseases, Zurich, Switzerland.
Abstract:
TFE3 translocation renal cell carcinoma (tRCC) is defined by chromosomal translocations involving the TFE3 transcription factor at chromosome Xp11.2. Genetically proven TFE3 tRCCs have a broad histologic spectrum with overlapping features to other renal tumor subtypes. In this study, we aimed for characterizing RCC with TFE3 protein expression. Using next-generation whole transcriptome sequencing (RNA-Seq) as a discovery tool, we analyzed fusion transcripts, gene expression profile, and somatic mutations in frozen tissue of one TFE3 tRCC. By applying a computational analysis developed to call chimeric RNA molecules from paired-end RNA-Seq data, we confirmed the known TFE3 translocation. Its fusion partner SFPQ has already been described as fusion partner in tRCCs. In addition, an RNA read-through chimera between TMED6 and COG8 as well as MET and KDR (VEGFR2) point mutations were identified. An EGFR mutation, but no chromosomal rearrangements, was identified in a control group of five clear cell RCCs (ccRCCs). The TFE3 tRCC could be clearly distinguished from the ccRCCs by RNA-Seq gene expression measurements using a previously reported tRCC gene signature. In validation experiments using reverse transcription-PCR, TMED6-COG8 chimera expression was significantly higher in nine TFE3 translocated and six TFE3-expressing/non-translocated RCCs than in 24 ccRCCs (P < .001) and 22 papillary RCCs (P < .05-.07). Immunohistochemical analysis of selected genes from the tRCC gene signature showed significantly higher eukaryotic translation elongation factor 1 alpha 2 (EEF1A2) and Contactin 3 (CNTN3) expression in 16 TFE3 translocated and six TFE3-expressing/non-translocated RCCs than in over 200 ccRCCs (P < .0001, both).
Insights
TFE3 translocation renal cell carcinoma (tRCC) is characterized by TFE3 gene fusions. RNA sequencing identified novel TMED6-COG8 chimeras and distinct gene expression profiles differentiating tRCC from clear cell RCC.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- TFE3 translocation renal cell carcinoma (tRCC) is defined by TFE3 gene alterations at chromosome Xp11.2.
- TFE3 tRCC exhibits diverse histology, often overlapping with other renal tumor subtypes.
- Characterizing TFE3 protein expression is crucial for understanding tRCC heterogeneity.
Purpose of the Study:
- To characterize renal cell carcinoma (RCC) with TFE3 protein expression using advanced sequencing techniques.
- To identify novel fusion transcripts and gene expression patterns in TFE3 tRCC.
- To differentiate TFE3 tRCC from clear cell RCC (ccRCC) using molecular markers.
Main Methods:
- Next-generation whole transcriptome sequencing (RNA-Seq) for discovery of fusion transcripts, gene expression, and mutations.
- Computational analysis of paired-end RNA-Seq data to identify chimeric RNA molecules.
- Reverse transcription-PCR (RT-PCR) and immunohistochemistry for validation of molecular findings.
Main Results:
- Confirmed known TFE3 translocations and identified a novel TMED6-COG8 RNA read-through chimera.
- Discovered MET and KDR (VEGFR2) point mutations in TFE3 tRCC, and an EGFR mutation in a ccRCC control.
- RNA-Seq gene expression signature distinguished TFE3 tRCC from ccRCC; TMED6-COG8 chimera expression was significantly higher in tRCC subtypes.
- Elevated EEF1A2 and CNTN3 expression confirmed in TFE3-altered RCCs compared to ccRCCs.
Conclusions:
- RNA-Seq is effective for characterizing TFE3 tRCC, revealing novel molecular alterations.
- The TMED6-COG8 chimera and elevated EEF1A2/CNTN3 expression serve as potential biomarkers for TFE3 tRCC.
- Molecular profiling enhances diagnostic accuracy and understanding of TFE3-driven renal tumors.
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