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Tumor Suppressor Properties of Small C-Terminal Domain Phosphatases in Clear Cell Renal Cell Carcinoma
George S Krasnov1,2, Grigory A Puzanov1, Erdem B Dashinimaev3
1Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Abstract:
Clear cell renal cell carcinoma (ccRCC) accounts for 80-90% of kidney cancers worldwide. Small C-terminal domain phosphatases CTDSP1, CTDSP2, and CTDSPL (also known as SCP1, 2, 3) are involved in the regulation of several important pathways associated with carcinogenesis. In various cancer types, these phosphatases may demonstrate either antitumor or oncogenic activity. Tumor-suppressive activity of these phosphatases in kidney cancer has been shown previously, but in general case, the antitumor activity may be dependent on the choice of cell line. In the present work, transfection of the Caki-1 cell line (ccRCC morphologic phenotype) with expression constructs containing the coding regions of these genes resulted in inhibition of cell growth in vitro in the case of CTDSP1 (p < 0.001) and CTDSPL (p < 0.05) but not CTDSP2. The analysis of The Cancer Genome Atlas (TCGA) data showed differential expression of some of CTDSP genes and of their target, RB1. These results were confirmed by quantitative RT-PCR using an independent sample of primary ccRCC tumors (n = 52). We observed CTDSPL downregulation and found a positive correlation of expression for two gene pairs: CTDSP1 and CTDSP2 (r = 0.76; p < 0.001) and CTDSPL and RB1 (r = 0.38; p < 0.05). Survival analysis based on TCGA data demonstrated a strong association of lower expression of CTDSP1, CTDSP2, CTDSPL, and RB1 with poor survival of ccRCC patients (p < 0.001). In addition, according to TCGA, CTDSP1, CTDSP2, and RB1 were differently expressed in two subtypes of ccRCC-ccA and ccB, characterized by different survival rates. These results confirm that CTDSP1 and CTDSPL have tumor suppressor properties in ccRCC and reflect their association with the more aggressive ccRCC phenotype.
Insights
Small C-terminal domain phosphatases CTDSP1 and CTDSPL exhibit tumor suppressor activity in clear cell renal cell carcinoma (ccRCC). Lower expression of CTDSP1, CTDSP2, CTDSPL, and RB1 correlates with poor ccRCC patient survival.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Clear cell renal cell carcinoma (ccRCC) is the most common kidney cancer.
- Small C-terminal domain phosphatases (CTDSP1, CTDSP2, CTDSPL) are implicated in carcinogenesis, with variable roles in different cancers.
- Previous studies suggest tumor-suppressive roles for these phosphatases in kidney cancer, but cell-line dependent effects exist.
Purpose of the Study:
- To investigate the role of CTDSP1, CTDSP2, and CTDSPL in ccRCC.
- To determine the in vitro effects of these phosphatases on ccRCC cell growth.
- To analyze the expression patterns and clinical relevance of CTDSP genes and their target RB1 in ccRCC patient data.
Main Methods:
- Transfection of Caki-1 ccRCC cells with CTDSP gene expression constructs.
- Analysis of The Cancer Genome Atlas (TCGA) data for gene expression and patient survival.
- Quantitative RT-PCR on primary ccRCC tumor samples (n=52).
Main Results:
- CTDSP1 and CTDSPL transfection inhibited Caki-1 cell growth in vitro.
- TCGA data revealed differential expression of CTDSP genes and RB1, with CTDSPL downregulation observed in primary tumors.
- Lower expression of CTDSP1, CTDSP2, CTDSPL, and RB1 was strongly associated with poor ccRCC patient survival.
- CTDSP1, CTDSP2, and RB1 showed differential expression in ccRCC subtypes (ccA and ccB) with distinct survival rates.
Conclusions:
- CTDSP1 and CTDSPL function as tumor suppressors in ccRCC.
- The expression levels of CTDSP genes and RB1 are linked to ccRCC aggressiveness and patient prognosis.
- These findings highlight the potential of CTDSP phosphatases as therapeutic targets or biomarkers in ccRCC.
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