Vitamin D receptor binding to DNA is altered without the change in its expression in human renal clear cell cancer
Agnieszka Madej1, Monika Puzianowska-Kuznicka, Zbigniew Tanski
1Department of Endocrinology, Medical Research Center, Polish Academy of Sciences, Warsaw, Poland.
Abstract:
Vitamin D co-regulates cell proliferation, differentiation and apoptosis, the processes that are disturbed in cancer tissues. It acts through the vitamin D nuclear receptor (VDR) that binds to DNA in the regulatory sequences of the target genes. As the kidney is one of the key organs for vitamin D metabolism and action, we analyzed VDR expression and its DNA binding activity in human renal clear cell cancer. 24 tumors, 24 controls that were excised from the opposite pole of the same kidney and 7 controls originating from kidneys without cancer were examined. Independently of tumor grading neither Northern blots nor immunoblotting demonstrated statistically significant differences of the mean VDR mRNA and protein amounts, respectively, in the cancer as compared to both control types. In contrast, the amount of VDR-DNA complexes was lower in 52.2% of the tumors in comparison to their corresponding controls. After normalization against VDR receptor protein amount in 34.8% of the tumors VDR-DNA binding was at least 3-4 times weaker than in the controls. However, the expression of vitamin D-dependent P21 gene on the mRNA level was not decreased in these cancers. It remains to be elucidated if altered VDR function due to its impaired binding to DNA contributes to the process of tumorigenesis, and what potential vitamin D-dependent mechanisms are involved in this process.
Insights
Vitamin D receptor (VDR) protein levels were normal in kidney cancer, but its DNA binding activity was reduced. This impaired VDR function may contribute to tumor development.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Vitamin D plays a crucial role in regulating cell processes like proliferation, differentiation, and apoptosis.
- These cellular processes are often dysregulated in cancerous tissues.
- The vitamin D receptor (VDR) mediates vitamin D's actions by binding to DNA regulatory sequences.
Purpose of the Study:
- To investigate VDR expression and DNA binding activity in human renal clear cell cancer.
- To determine if VDR function is altered in kidney tumors compared to normal kidney tissue.
Main Methods:
- Analysis of VDR mRNA and protein levels using Northern blots and immunoblotting.
- Assessment of VDR-DNA complex formation in tumor and control kidney samples.
- Examination of vitamin D-dependent P21 gene expression at the mRNA level.
Main Results:
- No significant differences in mean VDR mRNA or protein levels were found between kidney tumors and controls.
- A significant reduction in VDR-DNA binding activity was observed in over 50% of tumors.
- VDR-DNA binding was notably weaker in tumors, even after normalizing for VDR protein levels.
Conclusions:
- While VDR expression is maintained in renal clear cell carcinoma, its DNA binding capacity is impaired.
- Altered VDR function due to reduced DNA binding may contribute to kidney tumorigenesis.
- Further research is needed to elucidate the specific vitamin D-dependent mechanisms involved.
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