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.

Cell Structure and Function
|September 22, 2001
PubMed

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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