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Apico-basal Polarity Determinants Encoded by crumbs Genes Affect Ciliary Shaft Protein Composition IFT Movement Dynamics and Cilia Length

机译:面包屑基因编码的顶基极性决定因素影响纤毛轴蛋白组成IFT运动动力学和纤毛长度

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摘要

One of the most obvious manifestations of polarity in epithelia is the subdivision of the cell surface by cell junctions into apical and basolateral domains. crumbs genes are among key regulators of this form of polarity. Loss of crumbs function disrupts the apical cell junction belt and crumbs overexpression expands the apical membrane size. Crumbs proteins contain a single transmembrane domain and localize to cell junction area at the apical surface of epithelia. In some tissues, they are also found in cilia. To test their role in ciliogenesis, we investigated mutant phenotypes of zebrafish crumbs genes. In zebrafish, mutations of three crumbs genes, oko meduzy/crb2a, crb3a, and crb2b, affect cilia length in a subset of tissues. In oko meduzy (ome), this is accompanied by accumulation of other Crumbs proteins in the ciliary compartment. Moreover, intraflagellar transport (IFT) particle components accumulate in the ciliary shaft of ome;crb3a double mutants. Consistent with the above, Crb3 knockdown in mammalian cells affects the dynamics of IFT particle movement. These findings reveal crumbs-dependent mechanisms that regulate the localization of ciliary proteins, including Crumbs proteins themselves, and show that crumbs genes modulate intraflagellar transport and cilia elongation.
机译:上皮细胞中极性最明显的表现之一是通过细胞连接将细胞表面细分为顶端和基底外侧区域。面包屑基因是这种极性的关键调控因子之一。面包屑功能的丧失破坏了根尖细胞的连接带,并且面包屑的过表达扩大了根尖膜的大小。面包屑蛋白质包含单个跨膜结构域,并位于上皮顶表面的细胞连接区。在某些组织中,它们也存在于纤毛中。为了测试它们在纤毛发生中的作用,我们研究了斑马鱼面包屑基因的突变表型。在斑马鱼中,三个面包屑基因(oko meduzy / crb2a,crb3a和crb2b)的突变会影响组织子集中的纤毛长度。在oko meduzy(ome)中,这伴随着其他Crumbs蛋白在睫状区的积累。此外,鞭毛内运输(IFT)颗粒成分积累在ome; crb3a双重突变体的睫状干中。与上述一致,哺乳动物细胞中的Crb3敲低会影响IFT粒子运动的动力学。这些发现揭示了依赖于面包屑的机制调节纤毛蛋白(包括面包屑蛋白本身)的定位,并表明面包屑基因调节鞭毛内运输和纤毛伸长。

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