Clinical, Cellular, and Molecular Aspects of Cancer Invasion
- 1 April 2003
- journal article
- research article
- Published by American Physiological Society in Physiological Reviews
- Vol. 83 (2) , 337-376
- https://doi.org/10.1152/physrev.00024.2002
Abstract
Invasion causes cancer malignancy. We review recent data about cellular and molecular mechanisms of invasion, focusing on cross-talk between the invaders and the host. Cancer disturbs these cellular activities that maintain multicellular organisms, namely, growth, differentiation, apoptosis, and tissue integrity. Multiple alterations in the genome of cancer cells underlie tumor development. These genetic alterations occur in varying orders; many of them concomitantly influence invasion as well as the other cancer-related cellular activities. Examples discussed are genes encoding elements of the cadherin/catenin complex, the nonreceptor tyrosine kinase Src, the receptor tyrosine kinases c-Met and FGFR, the small GTPase Ras, and the dual phosphatase PTEN. In microorganisms, invasion genes belong to the class of virulence genes. There are numerous clinical and experimental observations showing that invasion results from the cross-talk between cancer cells and host cells, comprising myofibroblasts, endothelial cells, and leukocytes, all of which are themselves invasive. In bone metastases, host osteoclasts serve as targets for therapy. The molecular analysis of invasion-associated cellular activities, namely, homotypic and heterotypic cell-cell adhesion, cell-matrix interactions and ectopic survival, migration, and proteolysis, reveal branching signal transduction pathways with extensive networks between individual pathways. Cellular responses to invasion-stimulatory molecules such as scatter factor, chemokines, leptin, trefoil factors, and bile acids or inhibitory factors such as platelet activating factor and thrombin depend on activation of trimeric G proteins, phosphoinositide 3-kinase, and the Rac and Rho family of small GTPases. The role of proteolysis in invasion is not limited to breakdown of extracellular matrix but also causes cleavage of proinvasive fragments from cell surface glycoproteins.This publication has 367 references indexed in Scilit:
- A Signaling Adapter Function for α6β4 Integrin in the Control of HGF-Dependent Invasive GrowthCell, 2001
- HGF induces FAK activation and integrin-mediated adhesion in MTLn3 breast carcinoma cellsInternational Journal of Cancer, 1999
- Molecular Cloning of the Human p120ctnCatenin Gene (CTNND1): Expression of Multiple Alternatively Spliced IsoformsGenomics, 1998
- Role of bile acids in colorectal carcinogenesisEuropean Journal Of Cancer, 1995
- Isolation and characterization of a human pseudogene (CTNNAP1) for αE-catenin (CTNNA1): assignment of the pseudogene to 5q22 and the αE-catenin gene to 5q31Genomics, 1995
- cdc2-related protein kinases and cell cycle control in trypanosomatidsParasitology Today, 1994
- International seminar on amebiasisParasitology Today, 1993
- Pathways and mechanisms of avian trunk neural crest cell migration and localizationDevelopmental Biology, 1982
- Cell contact during early morphogenesis in the chick embryoDevelopmental Biology, 1967
- THE DISTRIBUTION OF SECONDARY GROWTHS IN CANCER OF THE BREAST.The Lancet, 1889