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Distinct roles of Bazooka and Stardust in the specification of Drosophila photoreceptor membrane architecture

机译:火箭筒和星尘在果蝇感光膜结构规范中的不同作用

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摘要

Photoreceptors form during Drosophila pupal development and acquire elaborate membrane structures, including the rhabdomeres and stalk membranes. Here, we show that the development of these cellular structures involves two distinct processes: the establishment of apical–basal polarity that requires Bazooka (Baz), and the regionalization of apical membrane into stalk membranes and rhabdomeres that requires Stardust (Sdt). In the absence of Baz, the apical–basal polarity is compromised in early pupal photoreceptors, and no identifiable apical membrane domain is formed. Sdt, in contrast, plays a more limited role in apical–basal polarity but is essential for the proper localization of transmembrane protein Crumbs (Crb), known to be required in the biogenesis of stalk membrane. Loss of Sdt causes strong defects in stalk membrane and rhabdomere resembling crb mutant phenotype. Thus, proteins required for establishing the early embryonic epithelial polarity are used later for the morphogenesis of photoreceptors, with Baz and Sdt functioning in different aspects of the formation of the apical–basal cellular architecture.
机译:果蝇p发育期间形成感光体,并获得精细的膜结构,包括横纹肌和茎膜。在这里,我们显示出这些细胞结构的发展涉及两个不同的过程:需要Bazooka(Baz)的根尖基极的建立,以及需要Stardust(Sdt)的茎尖膜到茎膜和横纹的区域化。在没有巴兹(Baz)的情况下,早期p感光器的顶基-基极极性受损,并且未形成可识别的顶膜结构域。相比之下,Sdt在心尖-基极极性中的作用更为有限,但对于跨膜蛋白Crumbs(Crb)的正确定位至关重要,已知该蛋白是茎膜的生物发生所必需的。 Sdt的丢失会在茎膜和鼠李糖单胞菌中造成严重缺陷,类似于crb突变表型。因此,建立早期胚胎上皮极性所需的蛋白质随后用于光感受器的形态发生,Baz和Sdt在顶基细胞结构形成的不同方面起作用。

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