Graduate School of Frontier Biosciences and Medicine, Osaka University, Osaka 5650871, Japan.
Japan Textile Products Quality and Technology Center, Kobe 6500011, Japan.
Sci Rep. 2017 Mar 8;7:43783. doi: 10.1038/srep43783.
The cytoskeleton is an essential cellular component that enables various sophisticated functions of epithelial cells by forming specialized subcellular compartments. However, the functional and structural roles of cytoskeletons in subcellular compartmentalization are still not fully understood. Here we identified a novel network structure consisting of actin filaments, intermediate filaments, and microtubules directly beneath the apical membrane in mouse airway multiciliated cells and in cultured epithelial cells. Three-dimensional imaging by ultra-high voltage electron microscopy and immunofluorescence revealed that the morphological features of each network depended on the cell type and were spatiotemporally integrated in association with tissue development. Detailed analyses using Odf2 mutant mice, which lack ciliary basal feet and apical microtubules, suggested a novel contribution of the intermediate filaments to coordinated ciliary beating. These findings provide a new perspective for viewing epithelial cell differentiation and tissue morphogenesis through the structure and function of apical cytoskeletal networks.
细胞骨架是一种重要的细胞成分,通过形成专门的细胞亚区室,使上皮细胞能够实现各种复杂的功能。然而,细胞骨架在细胞亚区室化中的功能和结构作用仍未完全了解。在这里,我们在小鼠气道多纤毛细胞和培养的上皮细胞中鉴定出一种由肌动蛋白丝、中间丝和微管组成的新型网络结构,位于顶膜下方。超高压电子显微镜和免疫荧光的三维成像显示,每个网络的形态特征取决于细胞类型,并与组织发育时空整合。使用缺乏纤毛基体和顶微管的 Odf2 突变小鼠的详细分析表明,中间丝对协调的纤毛摆动有新的贡献。这些发现为通过顶细胞骨架网络的结构和功能来观察上皮细胞分化和组织形态发生提供了新的视角。