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Proteolytic Cleavage of Protein Tyrosine Phosphatase mu regulates Glioblastoma Cell Migration.

Cancer Res.. 2008-09;  69(17):6960 - 8
Adam M. Burgoyne, Polly J. Phillips-Mason, Susan M. Burden-Gulley, Shenandoah Robinson, Andrew E. Sloan, Robert H. Miller, and Susann M. Brady-Kalnay. Department of Molecular Biology and Microbiology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106-4960, USA.
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摘要

Glioblastoma multiforme (GBM), the most common malignant primary brain tumor, represents a significant disease burden. GBM tumor cells disperse extensively throughout the brain parenchyma, and the need for tumor-specific drug targets and pharmacologic agents to inhibit cell migration and dispersal is great. The receptor protein tyrosine phosphatase mu (PTPmu) is a homophilic cell adhesion molecule. The full-length form of PTPmu is down-regulated in human glioblastoma. In this article, overexpression of full-length PTPmu is shown to suppress migration and survival of glioblastoma cells. Additionally, proteolytic cleavage is shown to be the mechanism of PTPmu down-regulation in glioblastoma cells. Proteolysis of ... More

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