Par complex in cancer: a regulator of normal cell polarity joins the dark side
- 24 November 2008
- journal article
- review article
- Published by Springer Nature in Oncogene
- Vol. 27 (55), 6878-6887
- https://doi.org/10.1038/onc.2008.340
Abstract
In the past 20 years, the discovery and characterization of the molecular machinery that controls cellular polarization have enabled us to achieve a better understanding of many biological processes. Spatial asymmetry or establishment of cell polarity during embryogenesis, epithelial morphogenesis, neuronal differentiation, and migration of fibroblasts and T cells are thought to rely on a small number of evolutionarily conserved proteins and pathways. Correct polarization is crucial for normal cell physiology and tissue homeostasis, and is lost in cancer. Thus, cell polarity signaling is likely to have an important function in tumor progression. Recent findings have identified a regulator of cell polarity, the Par complex, as an important signaling node in tumorigenesis. In normal cell types, the Par complex is part of the molecular machinery that regulates cell polarity and maintains normal cell homeostasis. As such, the polarity regulators are proposed to have a tumor suppressor function, consistent with the loss of polarity genes associated with hyperproliferation in Drosophila melanogaster. However, recent studies showing that some members of this complex also display pro-oncogenic activities suggest a more complex regulation of the polarity machinery during cellular transformation. Here, we examine the existing data about the different functions of the Par complex. We discuss how spatial restriction, binding partners and substrate specificity determine the signaling properties of Par complex proteins. A better understanding of these processes will very likely shed some light on how the Par complex can switch from a normal polarity regulation function to promotion of transformation downstream of oncogenes.Keywords
This publication has 123 references indexed in Scilit:
- Transforming Growth Factor-β-stimulated Endocardial Cell Transformation Is Dependent on Par6c Regulation of RhoAPublished by Elsevier ,2008
- Atypical Protein Kinase C Regulates Dual Pathways for Degradation of the Oncogenic Coactivator SRC-3/AIB1Molecular Cell, 2008
- The PAR-6 Polarity Protein Regulates Dendritic Spine Morphogenesis through p190 RhoGAP and the Rho GTPaseDevelopmental Cell, 2008
- Dynein-mediated apical localization of crumbs transcripts is required for Crumbs activity in epithelial polarityThe Journal of cell biology, 2008
- The PAR Proteins: Fundamental Players in Animal Cell PolarizationDevelopmental Cell, 2007
- Protein kinase Cι: Human oncogene, prognostic marker and therapeutic targetPharmacological Research, 2007
- Essential role of protein kinase C ζ in transducing a motility signal induced by superoxide and a chemotactic peptide, fMLPThe Journal of cell biology, 2007
- The Par polarity complex regulates Rap1- and chemokine-induced T cell polarizationThe Journal of cell biology, 2007
- PTEN-Mediated Apical Segregation of Phosphoinositides Controls Epithelial Morphogenesis through Cdc42Cell, 2007
- The Hallmarks of CancerCell, 2000