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Tenascin-C splice variant adhesive/anti-adhesive effects on chondrosarcoma cell attachment to fibronectin
M A Ghert1, W N Qi, H P Erickson
1Division of Orthopaedic Surgery, Duke University Medical Center, Durham, NC, USA.
Abstract:
Tenascin-C is an oligomeric glycoprotein of the extracellular matrix that has been found to have both adhesive and anti-adhesive properties for cells. Recent elucidation of the two major TNC splice variants (320 kDa and 220 kDa) has shed light on the possibility of varying functions of the molecule based on its splicing pattern. Tenascin-C is prominently expressed in embryogenesis and in pathologic conditions such as tumorogenesis and wound healing. Fibronectin is a prominent adhesive molecule of the extracellular matrix that is often co-localized with tenascin-C in these processes. We studied the chondrosarcoma cell line JJ012 with enzyme-linked immunoabsorbance assays, cell attachment assays and antibody-blocking assays to determine the adhesive/anti-adhesive properties of the two major tenascin-C splice variants with respect to fibronectin and their effect on chondrosarcoma cell attachment. We found that the small tenascin-C splice variant (220 kDa) binds to fibronectin, whereas the large tenascin-C splice variant (320 kDa) does not. In addition, the small tenascin-C splice variant was found to decrease adhesion for cells when bound to fibronectin, but contributed to adhesion when bound to plastic in fibronectin-coated wells. Antibody blocking experiments confirmed that both the small tenascin-C splice variant and fibronectin contribute to cell adhesion when bound to plastic. The large tenascin-C splice variant did not promote specific cell attachment. We hypothesize that the biologic activity of tenascin-C is dependent on the tissue-specific splicing pattern. The smaller tenascin-C isoform likely plays a structural and adhesive role, whereas the larger isoform, preferentially expressed in malignant tissue, likely plays a role in cell egress and metastasis.
Insights
The small tenascin-C splice variant binds fibronectin and affects cell adhesion, while the large variant does not. Tenascin-C
Area of Science:
- Extracellular Matrix Biology
- Cell Adhesion Mechanisms
- Glycoprotein Function
Background:
- Tenascin-C (TNC) is an extracellular matrix glycoprotein with dual adhesive and anti-adhesive properties.
- Two major TNC splice variants (320 kDa and 220 kDa) suggest differential functions.
- TNC is involved in embryogenesis, tumorogenesis, and wound healing, often alongside fibronectin.
Purpose of the Study:
- To investigate the adhesive/anti-adhesive properties of TNC splice variants.
- To determine the interaction of TNC variants with fibronectin.
- To assess the impact of TNC variants on chondrosarcoma cell attachment.
Main Methods:
- Utilized chondrosarcoma cell line JJ012.
- Employed enzyme-linked immunoabsorbance assays.
- Conducted cell attachment and antibody-blocking assays.
Main Results:
- The small TNC variant (220 kDa) binds fibronectin; the large variant (320 kDa) does not.
- Small TNC variant decreases cell adhesion when bound to fibronectin.
- Small TNC variant promotes adhesion to plastic in fibronectin-coated wells; large TNC variant does not promote specific attachment.
Conclusions:
- Tenascin-C's biological activity is dependent on its splicing pattern.
- The smaller TNC isoform likely has structural and adhesive roles.
- The larger TNC isoform, prevalent in malignant tissues, may facilitate cell metastasis.
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