紧密连接
细胞生物学
粘合连接
电池极性
极性(国际关系)
纤毛
上皮极性
肌动蛋白细胞骨架
肌动蛋白
细胞结
细胞骨架
上皮
生物发生
生物
化学
细胞
钙粘蛋白
生物化学
遗传学
基因
作者
Yvan Campos,Xiaohui Qiu,Elida Gomero,Randall Wakefield,Linda Horner,Wojciech Brutkowski,Young-Goo Han,David J. Solecki,Sharon Frase,Antonella Bongiovanni,Alessandra d’Azzo
摘要
Abstract Maintenance of epithelial cell polarity and epithelial barrier relies on the spatial organization of the actin cytoskeleton and proper positioning/assembly of intercellular junctions. However, how these processes are regulated is poorly understood. Here we reveal a key role for the multifunctional protein Alix in both processes. In a knockout mouse model of Alix, we identified overt structural changes in the epithelium of the choroid plexus and in the ependyma, such as asymmetrical cell shape and size, misplacement and abnormal beating of cilia, blebbing of the microvilli. These defects culminate in excessive cell extrusion, enlargement of the lateral ventricles and hydrocephalus. Mechanistically, we find that by interacting with F-actin, the Par complex and ZO-1, Alix ensures the formation and maintenance of the apically restricted actomyosin–tight junction complex. We propose that in this capacity Alix plays a role in the establishment of apical–basal polarity and in the maintenance of the epithelial barrier.
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