Department of Cell and Matrix Biology, Institute of Zoology, Johannes Gutenberg University, Mainz, Germany.
Biol Cell. 2011 Oct 1;103(10):449-66. doi: 10.1042/BC20110034.
The assembly and maintenance of cilia depend on IFT (intraflagellar transport) mediated by molecular motors and their interplay with IFT proteins. Here, we have analysed the involvement of IFT proteins in the ciliogenesis of mammalian photoreceptor cilia.
Electron microscopy revealed that ciliogenesis in mouse photoreceptor cells follows an intracellular ciliogenesis pathway, divided into six distinct stages. The first stages are characterized by electron-dense centriolar satellites and a ciliary vesicle, whereas the formations of the ciliary shaft and the light-sensitive outer segment discs are features of the later stages. IFT proteins were associated with ciliary apparatus during all stages of photoreceptor cell development.
Our data conclusively provide evidence for the participation of IFT proteins in photoreceptor cell ciliogenesis, including the formation of the ciliary vesicle and the elongation of the primary cilium. In advanced stages of ciliogenesis the ciliary localization of IFT proteins indicates a role in IFT as is seen in mature cilia. A prominent accumulation of IFT proteins in the periciliary cytoplasm at the base of the cilia in these stages most probably resembles a reserve pool of IFT molecules for further delivery into the growing ciliary shaft and their subsequent function in IFT. Nevertheless, the cytoplasmic localization of IFT proteins in the absence of a ciliary shaft in early stages of ciliogenesis may indicate roles of IFT proteins beyond their well-established function for IFT in mature cilia and flagella.
纤毛的组装和维持依赖于分子马达介导的内纤毛运输(IFT)及其与 IFT 蛋白的相互作用。在这里,我们分析了 IFT 蛋白在哺乳动物光感受器纤毛发生中的作用。
电子显微镜显示,小鼠光感受器细胞的纤毛发生遵循一种细胞内纤毛发生途径,分为六个不同的阶段。前几个阶段的特征是电子致密的中心粒卫星和纤毛泡,而纤毛轴和光敏感的外节盘的形成是后期阶段的特征。IFT 蛋白在光感受器细胞发育的所有阶段都与纤毛器相关。
我们的数据确凿地证明了 IFT 蛋白参与光感受器细胞纤毛发生,包括纤毛泡的形成和初级纤毛的伸长。在纤毛发生的后期阶段,IFT 蛋白在纤毛中的定位表明它们在 IFT 中的作用与成熟纤毛中所见的相同。在这些阶段,纤毛基部的纤毛旁细胞质中 IFT 蛋白的明显积累很可能类似于 IFT 分子的储备池,以便进一步输送到正在生长的纤毛轴中,并在 IFT 中发挥后续功能。然而,IFT 蛋白在纤毛发生的早期阶段在没有纤毛轴的情况下存在于细胞质中,这可能表明 IFT 蛋白的作用超出了它们在成熟纤毛和鞭毛中的 IFT 功能。