首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Abelson tyrosine kinase is required for Drosophila photoreceptor morphogenesis and retinal epithelial patterning.
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Abelson tyrosine kinase is required for Drosophila photoreceptor morphogenesis and retinal epithelial patterning.

机译:果蝇感光体形态发生和视网膜上皮图案形成需要Abelson酪氨酸激酶。

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摘要

Coordinated differentiation and morphogenesis transform the Drosophila retina from a layer of epithelial cells into a complex three-dimensional organ. In this study we show that the Abelson (Abl) tyrosine kinase localizes to the dynamically remodeling apical-junctional membrane domains of the developing photoreceptor cells. Analyses of abl mutant clone phenotypes demonstrate that abl is required for enriched localization of adherens junction and apical polarity complex proteins at photoreceptor-photoreceptor cell junctions and apical membrane domains, respectively, for rhabdomere generation and for spatial organization of ommatidial cells along the apical-basal axis of the epithelium. Loss of abl does not alter expression or localization of Enabled (Ena) nor does heterozygosity for ena dominantly suppress the abl phenotypes, suggesting the downstream effector mechanisms used by Abl in the eye may differ from those used in the embryo. Together our results reveal a prominent role for Abl in coordinating multiple aspects of photoreceptor morphogenesis.
机译:协调的分化和形态发生将果蝇视网膜从一层上皮细胞转化为复杂的三维器官。在这项研究中,我们表明Abelson(Abl)酪氨酸激酶定位于正在发育的感光细胞的动态重塑的根尖-结膜结构域。对abl突变体克隆表型的分析表明,abl是黏附连接和顶端极性复合蛋白分别在感光细胞-感光细胞连接和顶端膜结构域的富集定位,横纹肌生成和沿着顶端-基底的卵母细胞的空间组织所必需的上皮轴。 abl的丢失不会改变Enabled(Ena)的表达或定位,也不会杂乱地抑制enabl的表型,这表明Abl在眼中使用的下游效应子机制可能与胚胎中使用的下游效应子机制不同。在一起,我们的结果揭示了Abl在协调光感受器形态发生的多个方面的重要作用。

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