首页> 外文期刊>Molecular biology of the cell >Displacement of basolateral Bazooka/PAR-3 by regulated transport and dispersion during epithelial polarization in Drosophila
【24h】

Displacement of basolateral Bazooka/PAR-3 by regulated transport and dispersion during epithelial polarization in Drosophila

机译:果蝇上皮极化过程中通过调节运输和分散来改变基底外侧火箭筒/ PAR-3

获取原文
获取原文并翻译 | 示例
           

摘要

Polarity landmarks guide epithelial development. In the early Drosophila ectoderm, the scaffold protein Bazooka (Drosophila PAR-3) forms apicolateral landmarks to direct adherens junction assembly. However, it is unclear how Bazooka becomes polarized. We report two mechanisms acting in concert to displace Bazooka from the basolateral membrane. As cells form during cellularization, basally localized Bazooka undergoes basal-to-apical transport. Bazooka requires its three postsynaptic density 95, discs large, zonula occludens-1 (PDZ) domains to engage the transport mechanism, but with the PDZ domains deleted, basolateral displacement still occurs by gastrulation. Basolateral PAR-1 activity appears to act redundantly with the transport mechanism. Knockdown of PAR-1 sporadically destabilizes cellularization furrows, but basolateral displacement of Bazooka still occurs by gastrulation. In contrast, basolateral Bazooka displacement is blocked with disruption of both the transport mechanism and phosphorylation by PAR-1. Thus Bazooka is polarized through a combination of transport and PAR-1–induced dispersion from basolateral membranes. Our work complements recent findings in Caenorhabditis elegans and thus suggests the coupling of transport and dispersion is a common protein polarization strategy.
机译:极性标志物指导上皮的发展。在早期的果蝇外胚层中,支架蛋白火箭筒(果蝇PAR-3)形成了apicolateral标志,以指导粘附连接组装。然而,目前尚不清楚火箭筒如何极化。我们报告了两种机制共同作用,将火箭筒从基底外侧膜置换。当细胞在细胞化过程中形成时,基本定位的火箭筒经历了从基底到顶端的转运。火箭筒需要其三个突触后密度95,盘大,小带闭塞1(PDZ)域来参与运输机制,但删除了PDZ域,仍然通过胃泌尿发生基底外侧移位。基底外侧PAR-1活性似乎在转运机制中起着多余的作用。击倒PAR-1偶尔会破坏细胞化犁沟的稳定性,但仍会通过胃造瘘发生火箭筒的基底外侧移位。相反,基底外侧的火箭筒移位被PAR-1的转运机制和磷酸化的破坏所阻断。因此,火箭筒通过转运和PAR-1诱导的从基底外侧膜的分散而极化。我们的工作补充了秀丽隐杆线虫的最新发现,因此表明转运和分散的耦合是一种常见的蛋白质极化策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号