Glial tumor cell adhesion is mediated by binding of the FNIII domain of receptor protein tyrosine phosphatase beta (RPTP beta) to tenascin C

Citation
K. Adamsky et al., Glial tumor cell adhesion is mediated by binding of the FNIII domain of receptor protein tyrosine phosphatase beta (RPTP beta) to tenascin C, ONCOGENE, 20(5), 2001, pp. 609-618
Citations number
57
Categorie Soggetti
Onconogenesis & Cancer Research
Journal title
ONCOGENE
ISSN journal
09509232 → ACNP
Volume
20
Issue
5
Year of publication
2001
Pages
609 - 618
Database
ISI
SICI code
0950-9232(20010201)20:5<609:GTCAIM>2.0.ZU;2-K
Abstract
The extracellular domain of receptor protein tyrosine phosphatase beta (RPT P beta) is composed of several domains which mediate its interactions with distinct ligands present on the surface of either neurons or glial cells. H ere, we demonstrate that the fibronectin type III domain (FNIII) of RPTP be ta binds to glial tumor-derived cell lines and primary astrocytes, We used affinity purification to isolate several proteins that specifically bind to the FNIII domain of RPTP beta. One of these, a 240 kDa protein that was pu rified from U118MG glioblastoma cell, was identified as tenascin C based on the amino acid sequence of several tryptic peptides. The interaction of RP TP beta with tenascin C was found to mediate cell adhesion. Adhesion and sp reading of SF763T astrocytoma cells expressing RPTP beta on tenascin C,was specifically abolished by the addition of a soluble fragment containing the FNIII domain of the receptor, RPTP beta -dependent cell adhesion was media ted by binding to the alternatively spliced FNIII repeats A1,2,4 (TnfnA1,2, 4) of tenascin C, Furthermore, COS cells expressing RPTP beta adhere to Tnf nA1,2,4, while the parental cells did not. These results demonstrate that t he FNIII domain of RPTP beta binds to tenascin C and suggest that RPTP beta present on glial tumor cells is a primary adhesion receptor system to the extracellular matrix.