The Primary Cilium in Cell Signaling and Cancer
- 1 July 2006
- journal article
- review article
- Published by American Association for Cancer Research (AACR) in Cancer Research
- Vol. 66 (13) , 6463-6467
- https://doi.org/10.1158/0008-5472.can-06-0462
Abstract
The primary cilium is a microtubule-based antenna-like structure that emanates from the surface of virtually all cells in the mammalian body. It is anchored to the cell by the basal body, which develops from the mother centriole of the centrosome in a manner that is coordinately regulated with the cell cycle. The primary cilium is a sensory organelle that receives both mechanical and chemical signals from other cells and the environment, and transmits these signals to the nucleus to elicit a cellular response. Recent studies revealed that multiple components of the Sonic hedgehog and platelet-derived growth factor receptor-α signal transduction pathways localize to the primary cilium, and that loss of the cilium blocks ligand-induced signaling by both pathways. In light of the major role that these pathways play in numerous types of cancer, we anticipate that the emerging discoveries being made about the function of the primary cilium in signaling pathways that are critical for embryonic development and tissue homeostasis in adults will also provide novel insights into the molecular mechanisms of carcinogenesis. (Cancer Res 2006; 66(15): 6463-7)Keywords
This publication has 37 references indexed in Scilit:
- MKS1, encoding a component of the flagellar apparatus basal body proteome, is mutated in Meckel syndromeNature Genetics, 2006
- Gli2 and Gli3 Localize to Cilia and Require the Intraflagellar Transport Protein Polaris for Processing and FunctionPLoS Genetics, 2005
- Loss of the retrograde motor for IFT disrupts localization of Smo to cilia and prevents the expression of both activator and repressor functions of GliDevelopmental Biology, 2005
- Vertebrate Smoothened functions at the primary ciliumNature, 2005
- Functional coordination of intraflagellar transport motorsNature, 2005
- Proteomic analysis of a eukaryotic ciliumThe Journal of cell biology, 2005
- Targeted deletion of the novel cytoplasmic dynein mD2LIC disrupts the embryonic organiser, formation of the body axes and specification of ventral cell fatesDevelopment, 2004
- Hedgehog signalling in the mouse requires intraflagellar transport proteinsNature, 2003
- Loss of the Tg737 protein results in skeletal patterning defectsDevelopmental Dynamics, 2003
- Cyclopia and defective axial patterning in mice lacking Sonic hedgehog gene functionNature, 1996