Institut NeuroMyoGène, Univ Lyon, Université Claude Bernard Lyon-1, CNRS UMR-5310, INSERM U-1217, F-69008 Lyon, France.
Biochem Soc Trans. 2020 Jun 30;48(3):1067-1075. doi: 10.1042/BST20191007.
Cilia play important signaling or motile functions in various organisms. In Human, cilia dysfunctions are responsible for a wide range of diseases, called ciliopathies. Cilia assembly is a tightly controlled process, which starts with the conversion of the centriole into a basal body, leading to the formation of the ciliary bud that protrudes inside a ciliary vesicle and/or ultimately at the cell surface. Ciliary bud formation is associated with the assembly of the transition zone (TZ), a complex architecture of proteins of the ciliary base which plays critical functions in gating proteins in and out of the ciliary compartment. Many proteins are involved in the assembly of the TZ, which shows structural and functional variations in different cell types or organisms. In this review, we discuss how a particular complex, composed of members of the DZIP1, CBY and FAM92 families of proteins, is required for the initial stages of cilia assembly leading to ciliary bud formation and how their functional hierarchy contributes to TZ assembly. Moreover, we summarize how evidences in Drosophila reveal functional differences of the DZIP1-CBY-FAM92 complex in the different ciliated tissues of this organism. Whereas it is essential for proper TZ assembly in the two types of ciliated tissues, it is involved in stable anchoring of basal bodies to the plasma membrane in male germ cells. Overall, the DZIP1-CBY-FAM92 complex reveals a molecular assembly pathway required for the initial stages of ciliary bud formation and that is conserved from Drosophila to Human.
纤毛在各种生物体中发挥着重要的信号或运动功能。在人类中,纤毛功能障碍导致广泛的疾病,称为纤毛病。纤毛组装是一个受到严格控制的过程,首先是中心体转化为基体,导致纤毛芽的形成,该芽在纤毛囊内突出和/或最终在细胞表面突出。纤毛芽的形成与过渡区(TZ)的组装有关,过渡区是纤毛基部的蛋白质的复杂结构,在将蛋白质进出纤毛隔室的门控中起着关键作用。许多蛋白质参与过渡区的组装,其在不同的细胞类型或生物体中表现出结构和功能的变化。在这篇综述中,我们讨论了由 DZIP1、CBY 和 FAM92 蛋白家族成员组成的特定复合物如何在导致纤毛芽形成的纤毛组装的初始阶段发挥作用,以及它们的功能层次结构如何有助于过渡区的组装。此外,我们总结了果蝇中的证据如何揭示 DZIP1-CBY-FAM92 复合物在该生物体的不同纤毛组织中的功能差异。尽管它对于适当的过渡区组装在两种类型的纤毛组织中是必不可少的,但它参与了雄性生殖细胞中基体与质膜的稳定锚定。总之,DZIP1-CBY-FAM92 复合物揭示了一种分子组装途径,该途径对于纤毛芽形成的初始阶段是必需的,并且从果蝇到人类是保守的。