McCafferty Caitlyn L, Papoulas Ophelia, Lee Chanjae, Bui Khanh Huy, Taylor David W, Marcotte Edward M, Wallingford John B
Department of Molecular Biosciences, University of Texas, Austin, Austin, TX 78712, USA; Biozentrum, University of Basel, 4056 Basel, Switzerland.
Department of Molecular Biosciences, University of Texas, Austin, Austin, TX 78712, USA.
Dev Cell. 2025 Mar 24;60(6):965-978.e3. doi: 10.1016/j.devcel.2024.11.019. Epub 2024 Dec 13.
Motile cilia are ancient, evolutionarily conserved organelles whose dysfunction underlies motile ciliopathies, a broad class of human diseases. Motile cilia contain a myriad of different proteins that assemble into an array of distinct machines, and understanding the interactions and functional hierarchies among them presents an important challenge. Here, we defined the protein interactome of motile axonemes using cross-linking mass spectrometry in Tetrahymena thermophila. From over 19,000 cross-links, we identified over 4,700 unique amino acid interactions among over 1,100 distinct proteins, providing both macromolecular and atomic-scale insights into diverse ciliary machines, including the intraflagellar transport system, axonemal dynein arms, radial spokes, the 96-nm ruler, and microtubule inner proteins. Guided by this dataset, we used vertebrate multiciliated cells to reveal functional interactions among several poorly defined human ciliopathy proteins. This dataset provides a resource for studying the biology of an ancient organelle and the molecular etiology of human genetic disease.
运动性纤毛是古老的、进化上保守的细胞器,其功能障碍是运动性纤毛病的基础,运动性纤毛病是一大类人类疾病。运动性纤毛包含无数不同的蛋白质,这些蛋白质组装成一系列不同的机器,理解它们之间的相互作用和功能层次是一项重大挑战。在这里,我们利用嗜热四膜虫中的交联质谱法定义了运动轴丝的蛋白质相互作用组。从超过19000个交联中,我们在超过1100种不同的蛋白质中鉴定出超过4700种独特的氨基酸相互作用,为包括鞭毛内运输系统、轴丝动力蛋白臂、辐条、96纳米标尺和微管内蛋白在内的各种纤毛机器提供了大分子和原子尺度的见解。在这个数据集的指导下,我们利用脊椎动物的多纤毛细胞揭示了几种定义不明确的人类纤毛病蛋白之间的功能相互作用。这个数据集为研究一种古老细胞器的生物学和人类遗传病的分子病因提供了资源。