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Published on: October 27, 2014
Tumour cells down-regulate CCN2 gene expression in co-cultured fibroblasts in a Smad7- and ERK-dependent manner
Beverley A van Rooyen1, Georgia Schäfer, Virna D Leaner
1International Centre for Genetic Engineering and Biotechnology (ICGEB), Anzio Rd Observatory, Cape Town 7925, South Africa. iqbal.parker@icgeb.org.
Background:
Recent studies have revealed that interactions between tumour cells and the surrounding stroma play an important role in facilitating tumour growth and invasion. Stromal fibroblasts produce most of the extracellular matrix components found in the stroma. The aim of this study was to investigate mechanisms involved in tumour cell-mediated regulation of extracellular matrix and adhesion molecules in co-cultured fibroblasts. To this end, microarray analysis was performed on CCD-1068SK human fibroblast cells after direct co-culture with MDA-MB-231 human breast tumour cells.
Results:
We found that the expression of both connective tissue growth factor (CTGF/CCN2) and type I collagen was negatively regulated in CCD-1068SK fibroblast cells under direct co-culture conditions. Further analysis revealed that Smad7, a known negative regulator of the Smad signalling pathway involved in CCN2 promoter regulation, was increased in directly co-cultured fibroblasts. Inhibition of Smad7 expression in CCD-1068SK fibroblasts resulted in increased CCN2 expression, while Smad7 overexpression had the opposite effect. Silencing CCN2 gene expression in fibroblasts led, in turn, to a decrease in type I collagen mRNA and protein levels. ERK signalling was also shown to be impaired in CCD-1068SK fibroblasts after direct co-culture with MDA-MB-231 tumour cells, with Smad7 overexpression in fibroblasts leading to a similar decrease in ERK activity. These effects were not, however, seen in fibroblasts that were indirectly co-cultured with tumour cells.
Conclusion:
We therefore conclude that breast cancer cells require close contact with fibroblasts in order to upregulate Smad7 which, in turn, leads to decreased ERK signalling resulting in diminished expression of the stromal proteins CCN2 and type I collagen.
Insights
Breast cancer cells require direct contact with fibroblasts to decrease connective tissue growth factor (CCN2) and type I collagen. This interaction upregulates Smad7, inhibiting ERK signaling and stromal protein expression.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Tumor-stroma interactions are crucial for cancer progression.
- Stromal fibroblasts are key producers of the tumor extracellular matrix.
- Understanding tumor cell regulation of stromal components is vital.
Purpose of the Study:
- Investigate tumor cell-mediated regulation of extracellular matrix and adhesion molecules in co-cultured fibroblasts.
- Elucidate the molecular mechanisms underlying these interactions.
- Determine the role of direct cell contact.
Main Methods:
- Co-culture of MDA-MB-231 breast cancer cells with CCD-1068SK human fibroblasts.
- Microarray analysis to assess gene expression changes.
- Smad7 inhibition and overexpression experiments.
- CCN2 gene silencing.
- ERK signaling pathway analysis.
Main Results:
- Direct co-culture decreased connective tissue growth factor (CCN2) and type I collagen expression in fibroblasts.
- Smad7 expression was upregulated in directly co-cultured fibroblasts.
- Smad7 modulated CCN2 expression and ERK signaling.
- CCN2 silencing reduced type I collagen levels.
- Effects were dependent on direct cell-to-cell contact.
Conclusions:
- Close contact between breast cancer cells and fibroblasts is necessary for Smad7 upregulation.
- Upregulated Smad7 leads to decreased ERK signaling.
- This results in diminished expression of stromal proteins CCN2 and type I collagen.
- These findings highlight the importance of direct cell interactions in modulating the tumor microenvironment.
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