Serra Rosa
Department of Cell Biology, University of Alabama at Birmingham, Birmingham, Alabama 35294, USA.
Anat Rec (Hoboken). 2008 Sep;291(9):1049-61. doi: 10.1002/ar.20634.
Primary cilia are nonmotile microtubule-based appendages extending from the surface of almost all vertebrate cells. The process of intraflagellar transport (IFT) is responsible for building and maintaining the structure and function of primary cilia. Disruption of Kif3a, a component of the Kinesin-II motor complex, disables anterograde IFT and leads to failure in the formation and maintenance of cilia. Likewise, the absence of IFT88/Tg737/Polaris, a core component of the IFT particle, results in the loss of cilia. Although primary cilia were described on chondrocytes almost 40 years ago, only recently has the functional significance of IFT and cilia in skeletal development been uncovered through the use of mouse models containing mutations or deletions in genes required to make and maintain cilia. Together, the results indicate that primary cilia/IFT are involved in coordinating multiple signaling pathways within the skeleton.
初级纤毛是基于微管的非运动性附属物,从几乎所有脊椎动物细胞的表面伸出。鞭毛内运输(IFT)过程负责构建和维持初级纤毛的结构与功能。驱动蛋白-II运动复合体的一个组成部分Kif3a的破坏会使正向IFT失效,并导致纤毛形成和维持失败。同样,IFT颗粒的核心成分IFT88/Tg737/北极星的缺失会导致纤毛丧失。尽管近40年前就在软骨细胞上描述了初级纤毛,但直到最近,通过使用在制造和维持纤毛所需基因中含有突变或缺失的小鼠模型,IFT和纤毛在骨骼发育中的功能意义才被揭示出来。这些结果共同表明,初级纤毛/IFT参与协调骨骼内的多种信号通路。