LMW-PTP is a positive regulator of tumor onset and growth
- 15 March 2004
- journal article
- Published by Springer Nature in Oncogene
- Vol. 23 (22), 3905-3914
- https://doi.org/10.1038/sj.onc.1207508
Abstract
Low molecular weight protein tyrosine phosphatases (LMW-PTPs) are an enzyme family that plays a key role in cell proliferation control by dephosphorylating/inactivating both tyrosine kinase receptors (such as PDGF, insulin, and ephrin receptors) and docking proteins (such, as -catenin) endowed with both adhesion and transcriptional activity. Besides being a frequent event in human tumors, overexpression of LMW-PTP has been recently demonstrated to be sufficient to induce neoplastic transformation. We recently demonstrated that overexpression of LMW-PTP strongly potentiates the stability of cell–cell contacts at the adherens junction level, which powerfully suggests that LMW-PTP may also contribute to cancer invasivity. Focusing on mechanisms by which LMW-PTP is involved in cancer onset and progression, the emerging picture is that LMW-PTP strongly increases fibronectin-mediated cell adhesion and mobility but, paradoxically, decreases cell proliferation. Nevertheless, LMW-PTP-transfected NIH3T3 fibroblasts engrafted in nude mice induce the onset of larger fibrosarcomas, which are endowed with higher proliferation activity as compared to mock-transfected controls. Quite opposite effects have been obtained with engrafted fibroblasts transfected with a dominant-negative form of LMW-PTP. Notably, in sarcoma extracts, LMW-PTP overexpression greatly influences the ephrin A2 (EphA2) but not PDGF receptor or -catenin tyrosine phosphorylation. The high association of dephosphorylated EphA2 overexpression with most human cancers and our observation that cell growth stimulation by LMW-PTP overexpression is restricted to the in vivo model, strongly suggest that LMW-PTP oncogenic potential is mediated by its EphA2 tyrosine dephosphorylating activity.Keywords
This publication has 36 references indexed in Scilit:
- Phosphodiester Oligonucleotides Inhibit Mitosis and Trigger Apoptosis by a Non-Antisense, p53-Mediated MechanismAntisense and Nucleic Acid Drug Development, 2002
- Low Molecular Weight Protein-tyrosine Phosphatase Controls the Rate and the Strength of NIH-3T3 Cells Adhesion through Its Phosphorylation on Tyrosine 131 or 132Journal of Biological Chemistry, 2000
- The E-cadherin–catenin complex in tumour metastasisEuropean Journal Of Cancer, 2000
- Signaling—2000 and BeyondCell, 2000
- SHP-2 binds to Tyr763 and Tyr1009 in the PDGF β-receptor and mediates PDGF-induced activation of the Ras/MAP kinase pathway and chemotaxisOncogene, 1999
- Sequence-specific recognition of peptide substrates by the lowMrphosphotyrosine protein phosphatase isoformsFEBS Letters, 1998
- LMW-PTP Is a Negative Regulator of Insulin-Mediated Mitotic and Metabolic SignallingBiochemical and Biophysical Research Communications, 1997
- PDGF receptor as a specific in vivo target for low Mr phosphotyrosine protein phosphataseFEBS Letters, 1995
- Protein kinases in human breast cancerBreast Cancer Research and Treatment, 1995
- The 18 kDa cytosolic acid phosphatase from bovine liver has phosphotyrosine phosphatase activity on the autophosphorylated epidermal growth factor receptorFEBS Letters, 1989