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Apical-basal polarity in Drosophila neuroblasts is independent of vesicular trafficking

机译:果蝇成神经细胞的顶基极极性与水泡运输无关

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The possession of apical-basal polarity is a common feature of epithelia and neural stem cells, so-called neuroblasts (NBs). In Drosophila, an evolutionarily conserved protein complex consisting of atypical protein kinase C and the scaffolding proteins Bazooka/PAR-3 and PAR-6 controls the polarity of both cell types. The components of this complex localize to the apical junctional region of epithelial cells and form an apical crescent in NBs. In epithelia, the PAR proteins interact with the cellular machinery for polarized exocytosis and endocytosis, both of which are essential for the establishment of plasma membrane polarity. In NBs, many cortical proteins show a strongly polarized subcellular localization, but there is little evidence for the existence of distinct apical and basolateral plasma membrane domains, raising the question of whether vesicular trafficking is required for polarization of NBs. We analyzed the polarity of NBs mutant for essential regulators of the main exocytic and endocytic pathways. Surprisingly, we found that none of these mutations affected NB polarity, demonstrating that NB cortical polarity is independent of plasma membrane polarity and that the PAR proteins function in a cell type-specific manner.
机译:顶基极的拥有是上皮和神经干细胞(所谓的神经母细胞)的共同特征。在果蝇中,由非典型蛋白激酶C和支架蛋白Bazooka / PAR-3和PAR-6组成的进化保守蛋白复合物控制着两种细胞类型的极性。该复合物的成分位于上皮细胞的顶端连接区域,并在NB中形成顶端新月形。在上皮细胞中,PAR蛋白与细胞机制相互作用以极化胞吐作用和胞吞作用,这两者对于建立质膜极性至关重要。在NB中,许多皮质蛋白显示出强烈极化的亚细胞定位,但几乎没有证据表明存在独特的顶质和基底外侧质膜结构域,这引发了是否需要囊泡运输来实现NBs极化的问题。我们分析了NBs突变体的极性主要细胞外和内吞途径的重要监管机构。出乎意料的是,我们发现这些突变均不影响NB极性,表明NB皮质极性独立于质膜极性,并且PAR蛋白以细胞类型特异性方式起作用。

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