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[Cancer Research 64, 7377-7385, October 15, 2004]
© 2004 American Association for Cancer Research


Regular Articles

Differential Gene Expression Analysis Reveals Activation of Growth Promoting Signaling Pathways by Tenascin-C

Christian Ruiz1, Wentao Huang2, Monika E. Hegi3, Katrin Lange2, Marie-France Hamou3, Erika Fluri2, Edward J. Oakeley1, Ruth Chiquet-Ehrismann1 and Gertraud Orend2

1 Friedrich Miescher Institute for Biomedical Research, Novartis Forschungsstiftung, Basel; 2 Institute of Biochemistry and Genetics, University of Basel, Basel; and 3 Laboratory of Tumor Biology and Genetics, Department of Neurosurgery, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland

Tenascin-C is an adhesion-modulating extracellular matrix molecule that is highly expressed in tumor stroma and stimulates tumor cell proliferation. Adhesion of T98G glioblastoma cells to a fibronectin substratum is inhibited by tenascin-C. To address the mechanism of action, we performed a RNA expression analysis of T89G cells grown in the presence or absence of tenascin-C and found that tenascin-C down-regulates tropomyosin-1. Upon overexpression of tropomyosin-1, cell spreading on a fibronectin/tenascin-C substratum was restored, indicating that tenascin-C destabilizes actin stress fibers through down-regulation of tropomyosin-1. Tenascin-C also increased the expression of the endothelin receptor type A and stimulated the corresponding mitogen-activated protein kinase signaling pathway, which triggers extracellular signal-regulated kinase 1/2 phosphorylation and c-Fos expression. Tenascin-C additionally caused down-regulation of the Wnt inhibitor Dickkopf 1. In consequence, Wnt signaling was enhanced through stabilization of ß-catenin and stimulated the expression of the ß-catenin target Id2. Finally, our in vivo data derived from astrocytoma tissue arrays link increased tenascin-C and Id2 expression with high malignancy. Because increased endothelin and Wnt signaling, as well as reduced tropomyosin-1 expression, are closely linked to transformation and tumorigenesis, we suggest that tenascin-C specifically modulates these signaling pathways to enhance proliferation of glioma cells.




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