Robert Aude, Margall-Ducos Germain, Guidotti Jacques-Emmanuel, Brégerie Olivier, Celati Claude, Bréchot Christian, Desdouets Chantal
Institut Cochin, Département Génétique et Développement, Faculté de médecine R. Descartes, UM 3, Paris, F-75014 France.
J Cell Sci. 2007 Feb 15;120(Pt 4):628-37. doi: 10.1242/jcs.03366. Epub 2007 Jan 30.
Loss of normal primary cilia function in mammals is linked to proliferative diseases, such as polycystic kidney disease, suggesting a regulatory relationship between cilia and cell cycle. The primary cilium expressed by most mammalian cells is nucleated from the elder centriole of the centrosome. The relationship between centrosome and cilia suggests that these structures share functions and components. We now show that IFT88/polaris, a component of the intraflagellar transport, remains associated to the centrosome in a proliferative state. IFT88/polaris is tightly associated with the centrosome throughout the cell cycle in a microtubule- and dynein-independent manner. IFT88/polaris tetratricopeptide repeat motifs are essential for this localization. Overexpression of IFT88/polaris prevents G1-S transition and induces apoptotic cell death. By contrast, IFT88/polaris depletion induced by RNA interference promotes cell-cycle progression to S, G2, and M phases. Finally, we demonstrate that IFT88/polaris interacts with Che-1, an Rb-binding protein that inhibits the Rb growth suppressing function. We propose that IFT88/polaris, a protein essential for ciliogenesis, is also crucial for G1-S transition in non-ciliated cells.
哺乳动物中正常初级纤毛功能的丧失与增殖性疾病相关,如多囊肾病,这表明纤毛与细胞周期之间存在调节关系。大多数哺乳动物细胞表达的初级纤毛由中心体的老中心粒形成。中心体与纤毛之间的关系表明这些结构共享功能和成分。我们现在表明,鞭毛内运输的一个成分IFT88/北极星,在增殖状态下仍与中心体相关。IFT88/北极星在整个细胞周期中以不依赖微管和动力蛋白的方式与中心体紧密相关。IFT88/北极星四肽重复基序对于这种定位至关重要。IFT88/北极星的过表达阻止G1-S期转换并诱导凋亡性细胞死亡。相比之下,RNA干扰诱导的IFT88/北极星缺失促进细胞周期进展至S期、G2期和M期。最后,我们证明IFT88/北极星与Che-1相互作用,Che-1是一种Rb结合蛋白,可抑制Rb的生长抑制功能。我们提出,IFT蛋白88/北极星,一种纤毛发生所必需的蛋白质,对非纤毛细胞中的G1-S期转换也至关重要。