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Spatial-temporal expressions of Crumbs and Nagie oko and their interdependence in zebrafish central nervous system during early development

机译:Crumbs和Nagie oko在早期发育过程中在斑马鱼中枢神经系统中的时空表达及其相互依赖性

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摘要

A vast number of apicobasal polarity proteins play essential roles in the polarization and morphogenesis of the neuroepithelia. Crumbs (Crb) type I transmembrane cell-cell adhesion proteins are among these proteins. Five crb genes have been identified in zebrafish. However, their expressional and functional differences during early neural development remain to be fully elucidated. Here, we study the spatial-temporal expression patterns and functions of Crb1, Crb2a, and Crb2b in the central nervous system (CNS) during the neurulation period. We show that: 1, the optic vesicle and undifferentiated retinal neuroepithelium only express Crb2a; 2, Crb1 and Crb2a expressions overlap extensively in the undifferentiated neural tube epithelium; 3, Crb2b expression is the weakest of the three and is restricted to the ventral-most regions of the anterior CNS; and 4, Nok and Crb proteins require each other for their apical localization in neuroepithelium. The commencements of Crb1, Crb2a, and Crb2b expressions follow a spatial-temporal spread from anterior to posterior and from ventral to dorsal and lag behind that of adherens junction components, such as ZO-1 and actin bundles. Genetic and morpholino suppression analyses suggest that in regions where these Crb expressions overlap, they are functionally redundant in maintaining apicobasal polarity of the undifferentiated neuroepithelium.
机译:大量的apapobasal极性蛋白在神经上皮细胞的极化和形态发生中起重要作用。这些蛋白质中有I型面包屑(Crb)跨膜细胞间粘附蛋白。在斑马鱼中发现了五个crb基因。但是,它们在早期神经发育过程中的表达和功能差异尚待充分阐明。在这里,我们研究了中枢神经系统(CNS)在训练期间Crb1,Crb2a和Crb2b的时空表达模式和功能。我们显示:1,视神经小泡和未分化的视网膜神经上皮仅表达Crb2a;图2中,Crb1和Crb2a表达在未分化的神经管上皮中广泛重叠; 3,Crb2b表达是这三个中最弱的,并且仅限于前CNS的最腹侧区域。 4,Nok和Crb蛋白在神经上皮细胞中的顶端定位相互依赖。 Crb1,Crb2a和Crb2b表达的开始遵循从前到后,从腹到背的时空分布,并落后于诸如ZO-1和肌动蛋白束等粘附连接成分。遗传和吗啉代抑制分析表明,在这些Crb表达重叠的区域中,它们在维持未分化神经上皮的顶突极性方面在功能上是多余的。

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