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首页> 外文期刊>Journal of Cell Science >Multiple domains of Stardust differentially mediate localisation of the Crumbs-Stardust complex during photoreceptor development in Drosophila.
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Multiple domains of Stardust differentially mediate localisation of the Crumbs-Stardust complex during photoreceptor development in Drosophila.

机译:在果蝇的感光细胞发育过程中,星尘的多个域差异地介导了Crumbs-Stardust复合物的定位。

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摘要

Drosophila Stardust (Sdt), a member of the MAGUK family of scaffolding proteins, is a constituent of the evolutionarily conserved Crumbs-Stardust (Crb-Sdt) complex that controls epithelial cell polarity in the embryo and morphogenesis of photoreceptor cells. Although apical localisation is a hallmark of the complex in all cell types and in all organisms analysed, only little is known about how individual components are targeted to the apical membrane. We have performed a structure-function analysis of Sdt by constructing transgenic flies that express altered forms of Sdt to determine the roles of individual domains for localisation and function in photoreceptor cells. The results corroborate the observation that the organisation of the Crb-Sdt complex is differentially regulated in pupal and adult photoreceptors. In pupal photoreceptors, only the PDZ domain of Sdt - the binding site of Crb - is required for apical targeting. In adult photoreceptors, by contrast, targeting of Sdt to the stalk membrane, a distinct compartment of the apical membrane between the rhabdomere and the zonula adherens, depends on several domains, and seems to be a two-step process. The N-terminus, including the two ECR domains and a divergent N-terminal L27 domain that binds the multi-PDZ domain protein PATJ in vitro, is necessary for targeting the protein to the apical pole of the cell. The PDZ-, the SH3- and the GUK-domains are required to restrict the protein to the stalk membrane. Drosophila PATJ or Drosophila Lin-7 are stabilised whenever a Sdt variant that contains the respective binding site is present, independently of where the variant is localised. By contrast, only full-length Sdt, confined to the stalk membrane, stabilises and localises Crb, although only in reduced amounts. The amount of Crumbs recruited to the stalk membrane correlates with its length. Our results highlight the importance of the different Sdt domains and point to a more intricate regulation of the Crb-Sdt complex in adult photoreceptor cells.
机译:果蝇星尘(Sdt)是MAGUK支架蛋白家族的成员,是进化保守的Crumbs-Stardust(Crb-Sdt)复合物的组成部分,该复合物控制着胚胎中上皮细胞的极性和感光细胞的形态。尽管根尖定位是所有细胞类型和分析的所有生物中复合物的标志,但对于单个成分如何靶向顶膜知之甚少。我们已经通过构建表达改变形式的Sdt的转基因果蝇来确定Sdt的结构功能,从而确定单个域在感光细胞中的定位和功能。结果证实了the和成人感光细胞中Crb-Sdt复合物的组织受到不同调节的观察结果。在p感光器中,只有Sdt的PDZ域(Crb的结合位点)才是根尖靶向所需的。相比之下,在成年感光细胞中,将Sdt靶向茎膜,即在横纹肌球和小带之间粘附的顶膜的独特隔室,取决于几个域,似乎是一个两步过程。 N末端,包括两个ECR结构域和一个在体外与多PDZ结构域蛋白PATJ结合的N末端L27分化域,对于将该蛋白靶向细胞的顶端极是必要的。需要PDZ-,SH3-和GUK域将蛋白质限制在茎膜上。只要存在包含各自结合位点的Sdt变体,果蝇PATJ或果蝇Lin-7就会稳定下来,而与变体的定位位置无关。相比之下,仅全长Sdt(限制在茎膜上)稳定并定位Crb,尽管数量减少了。吸收到茎膜上的面包屑的数量与其长度相关。我们的结果凸显了不同Sdt域的重要性,并指出了成年感光细胞中Crb-Sdt复合物的更复杂调控。

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