Yamamoto Ryosuke, Sahashi Yui, Shimo-Kon Rieko, Sakato-Antoku Miho, Suzuki Miyuka, Luo Leo, Tanaka Hideaki, Ishikawa Takashi, Yagi Toshiki, King Stephen M, Kurisu Genji, Kon Takahide
Department of Biological Sciences, Graduate School of Science, Osaka University, Osaka 560-0043, Japan.
Department of Molecular Biology and Biophysics, University of Connecticut Health Center, Farmington, CT 06030-3305.
Proc Natl Acad Sci U S A. 2025 Mar 25;122(12):e2423948122. doi: 10.1073/pnas.2423948122. Epub 2025 Mar 19.
Motile cilia are organelles found on many eukaryotic cells that play critical roles in development and fertility. Human CFAP298 has been implicated in the transport/assembly of ciliary dyneins, and defects in this protein cause primary ciliary dyskinesia. However, neither the exact function nor the structure of CFAP298 have been elucidated. Here, we took advantage of , a ciliated alga, to study the structure and function of FBB18, an ortholog of CFAP298. Multiple ciliary dyneins were greatly reduced in cilia of mutants. In addition, we found that both the stability of ciliary dynein heavy chains (HCs) and the association between HCs and intermediate/light chains (IC/LCs) are greatly reduced in cytoplasm, strongly suggesting that FBB18 functions in the cytoplasmic assembly (the so-called "preassembly") of dynein complexes from HC/IC/LCs. Furthermore, X-ray crystallography revealed that FBB18 forms a bilobed structure with globular domains at both ends of the molecule, connected by an α-helical bundle. Unexpectedly, one globular domain shows high similarity to ubiquitin, a small protein critical for the modification of a variety of protein complexes, and this ubiquitin-like domain is indispensable for the molecular function of FBB18. Our results demonstrate that FBB18, a specialized member of the ubiquitin-like protein family, plays a critical role in dynein preassembly, most likely by mediating diverse interactions between dynein HCs, molecular chaperone(s), and other preassembly factor(s) using the ubiquitin-like domain as well as other regions, and by facilitating the proper folding of dynein HCs.
运动纤毛是许多真核细胞上发现的细胞器,在发育和生育中发挥关键作用。人类CFAP298与纤毛动力蛋白的运输/组装有关,该蛋白缺陷会导致原发性纤毛运动障碍。然而,CFAP298的确切功能和结构均未阐明。在此,我们利用一种纤毛藻来研究CFAP298的直系同源物FBB18的结构和功能。在突变体的纤毛中,多种纤毛动力蛋白大幅减少。此外,我们发现,在细胞质中,纤毛动力蛋白重链(HCs)的稳定性以及HCs与中间/轻链(IC/LCs)之间的结合均大幅降低,这有力地表明FBB18在由HC/IC/LCs组成的动力蛋白复合物的细胞质组装(即所谓的“预组装”)中发挥作用。此外,X射线晶体学显示,FBB18形成一种双叶结构,分子两端有球状结构域,由一个α-螺旋束连接。出乎意料的是,一个球状结构域与泛素高度相似,泛素是一种对多种蛋白质复合物修饰至关重要的小蛋白,且这种类泛素结构域对FBB18的分子功能不可或缺。我们的结果表明,FBB18作为类泛素蛋白家族的一个特殊成员,在动力蛋白预组装中起关键作用,很可能是通过利用类泛素结构域以及其他区域介导动力蛋白HCs、分子伴侣和其他预组装因子之间的多种相互作用,并促进动力蛋白HCs的正确折叠。