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CXCR4/CXCL12 expression and signalling in kidney cancer
A J Schrader1, O Lechner, M Templin
1Department of Cell Biology and Immunology, German Research Centre for Biotechnology (GBF), Mascheroder Weg 1, D-38124 Braunschweig, Germany.
Abstract:
CXCL12 (SDF-1), a CXC-chemokine, and its specific receptor, CXCR4, have recently been shown to be involved in tumourgenesis, proliferation and angiogenesis. Therefore, we analysed CXCL12alpha/CXCR4 expression and function in four human kidney cancer cell lines (A-498, CAKI-1, CAKI-2, HA-7), 10 freshly harvested human tumour samples and corresponding normal kidney tissue. While none of the analysed tumour cell lines expressed CXCL12alpha, A-498 cells were found to express CXCR4. More importantly, real-time RT-PCR analysis of 10 tumour samples and respective adjacent normal kidney tissue disclosed a distinct and divergent downregulation of CXCL12alpha and upregulation of CXCR4 in primary tumour tissue. To prove that the CXCR4 protein is functionally active, rhCXCL12alpha was investigated for its ability to induce changes of intracellular calcium levels in A-498 cells. Moreover, we used cDNA expression arrays to evaluate the biological influence of CXCL12alpha. Comparing gene expression profiles in rhCXCL12alpha stimulated vs unstimulated A-498 kidney cancer cells revealed specific regulation of 31 out of 1176 genes tested on a selected human cancer array, with a prominent stimulation of genes involved in cell-cycle regulation and apoptosis. The genetic changes reported here should provide new insights into the developmental paths leading to tumour progression and may also aid the design of new approaches to therapeutic intervention.
Insights
Kidney cancer cells show altered expression of CXCL12 and its receptor CXCR4. This chemokine pathway may influence tumor progression and offers potential therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- CXCL12 (SDF-1), a chemokine, and its receptor CXCR4 are implicated in tumor development.
- Their role in kidney cancer warrants further investigation.
Purpose of the Study:
- To analyze CXCL12alpha and CXCR4 expression and function in human kidney cancer.
- To investigate the impact of CXCL12alpha on gene expression in kidney cancer cells.
Main Methods:
- Analysis of CXCL12alpha/CXCR4 in kidney cancer cell lines and patient samples.
- Real-time RT-PCR for gene expression analysis.
- Intracellular calcium level measurements.
- cDNA expression arrays to assess gene regulation.
Main Results:
- Kidney tumor tissues showed decreased CXCL12alpha and increased CXCR4 expression compared to normal tissue.
- A-498 kidney cancer cells expressed CXCR4 and responded to rhCXCL12alpha.
- CXCL12alpha stimulation altered the expression of 31 genes, including those involved in cell-cycle regulation and apoptosis.
Conclusions:
- CXCL12alpha and CXCR4 exhibit altered expression in kidney tumors.
- CXCR4 is functionally active in kidney cancer cells.
- CXCL12alpha influences gene expression related to cell-cycle regulation and apoptosis, suggesting a role in tumor progression and potential therapeutic strategies.