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Updated: Jul 13, 2026

Analysis of Cell Cycle Position in Mammalian Cells
Published on: January 21, 2012
Impaired expression of the cell cycle regulator BTG2 is common in clear cell renal cell carcinoma
Kirsten Struckmann1, Peter Schraml, Ronald Simon
1Institute for Pathology, University of Basel, Basel, Switzerland.
Abstract:
The prognosis of patients with renal cell carcinoma (RCC) is poor. A full understanding of the molecular genetics and signaling pathways involved in renal cancer development and in the metastatic process is of central importance for developing innovative and novel treatment options. In this study, BD Atlas Human Cancer 1.2 cDNA microarrays were used to identify genes involved in renal tumorigenesis. By analyzing gene expression patterns of four clear cell RCC (cRCC) cell lines and normal renal tissue, 25 genes were found differentially expressed. To determine the relevance of these genes, RNA in situ hybridization was performed on a tissue microarray generated from 61 snap-frozen primary renal cell carcinomas and 12 normal renal cortex biopsies. B-cell translocation gene 2 (BTG2), a negative cell cycle regulator, which was expressed in normal renal tissue but down-regulated in cRCC cell lines and primary cRCCs, was selected for additional experiments. Quantitative BTG2 mRNA expression analysis in 42 primary cRCCs and 18 normal renal cortex biopsies revealed up to 44-fold reduced expression in the tumor tissues. Decrease of BTG2 expression was not associated with tumor stage, grade, and survival. Cell culture experiments demonstrated that BTG2 expression was weakly inducible by the phorbolester 12-O-tetradecanoylphorbol-13-acetate in one of four cRCC cell lines. In contrast, increasing cell density led to elevated BTG2 mRNA expression in three of four cRCC cell lines. In both experiments, BTG2 mRNA levels did not reach values observed in normal renal tissue. These data suggest that down-regulation of BTG2 is an important step in renal cancer development.
Insights
Down-regulation of B-cell translocation gene 2 (BTG2), a cell cycle regulator, is observed in clear cell renal cell carcinoma (ccRCC). This gene suppression is a key step in renal cancer development, impacting treatment strategies.
Area of Science:
- Oncology
- Molecular Genetics
- Cancer Biology
Background:
- Prognosis for renal cell carcinoma (RCC) patients remains poor.
- Understanding molecular genetics is crucial for novel treatment development.
- Identifying genes in renal tumorigenesis and metastasis is essential.
Purpose of the Study:
- To identify genes involved in renal tumorigenesis using cDNA microarrays.
- To analyze gene expression patterns in clear cell RCC (ccRCC) and normal renal tissue.
- To investigate the role of differentially expressed genes in ccRCC development.
Main Methods:
- Utilized BD Atlas Human Cancer 1.2 cDNA microarrays for gene expression profiling.
- Performed RNA in situ hybridization on tissue microarrays of primary ccRCC and normal renal cortex.
- Conducted quantitative mRNA expression analysis and cell culture experiments for BTG2.
Main Results:
- Identified 25 differentially expressed genes between ccRCC cell lines and normal renal tissue.
- Found B-cell translocation gene 2 (BTG2), a negative cell cycle regulator, significantly down-regulated in ccRCC.
- Observed up to 44-fold reduced BTG2 mRNA expression in tumor tissues compared to normal tissue.
- BTG2 expression decrease was not correlated with tumor stage, grade, or survival.
- BTG2 expression was weakly inducible and influenced by cell density, but did not reach normal tissue levels.
Conclusions:
- Down-regulation of BTG2 is a significant event in renal cancer development.
- BTG2 may serve as a potential biomarker or therapeutic target in ccRCC.
- Further research is warranted to explore the functional role of BTG2 in renal tumorigenesis.
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