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Drosophila Crumbs is a positional cue in photoreceptor adherens junctions and rhabdomeres

机译:果蝇面包屑是感光细胞黏附连接和横纹肌中的位置提示

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Drosophila Crumbs (Crb) is required for apical-basal polarity and is an apical determinant in embryonic epithelia. Here, we describe properties of Crb that control the position and integrity of the photoreceptor adherens junction and photosensitive organ, or rhabdomere3. In contrast to normal photoreceptor adherens junctions and rhabdomeres, which span the depth of the retina, adherens junctions and rhabdomeres of Crb-deficient photoreceptors initially accumulate at the top of the retina and fail to maintain their integrity as they stretch to the retinal floor. We show that Crb controls localization of the adherens junction through its intracellular domain containing a putative binding site for a protein 4.1 superfamily protein (FERM). Although loss of Crb or overexpression of the FERM binding domain causes mislocalization of adherens junctions, they do not result in a significant loss of photoreceptor polarity. Mutations in CRB1, a human homologue of crb, are associated with photo-receptor degeneration in retinitis pigmentosa 12 (RP12) and Leber congenital amaurosis (LCA). The intracellular domain of CRB1 behaves similarly to its Drosophila counterpart when overexpressed in the fly eye. Our studies may provide clues for mechanisms of photoreceptor degeneration in RP12 and LCA.
机译:果蝇面包屑(Crb)是根尖基极所需的,并且是胚胎上皮细胞的根尖决定因素。在这里,我们描述了Crb的属性,该属性控制着感光细胞粘附连接和光敏器官或rhabdomere3的位置和完整性。与跨越视网膜深度的正常感光细胞黏附连接和横纹肌不同,缺乏Crb的感光细胞的黏附连接和横纹肌最初聚集在视网膜的顶部,并且在它们延伸到视网膜底部时无法保持其完整性。我们显示Crb通过其胞内域控制粘附连接的本地化,该域包含蛋白4.1超家族蛋白(FERM)的假定结合位点。尽管Crb的丢失或FERM结合域的过表达会导致粘附连接的定位错误,但它们不会导致感光器极性的显着降低。 CRB1(人类crb的同源物)中的突变与色素性视网膜炎12(RP12)和Leber先天性黑病(LCA)中的感光受体变性有关。当在蝇眼中过度表达时,CRB1的细胞内结构域与其果蝇对应物的行为相似。我们的研究可能为RP12和LCA中光感受器变性的机制提供线索。

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