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The golgin Lava lamp mediates dynein-based Golgi movements during Drosophila cellularization

机译:果蝇熔岩过程中,高尔金熔岩灯可调节基于达因素的高尔基体运动

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摘要

Drosophila melanogaster cellularization is a dramatic form of cytokinesis in which a membrane furrow simultaneously encapsulates thousands of cortical nuclei of the syncytial embryo to generate a polarized cell layer. Formation of this cleavage furrow depends on Golgi-based secretion and microtubules(1-3). During cellularization, specific Golgi move along microtubules, first to sites of furrow formation and later to accumulate within the apical cytoplasm of the newly forming cells(3). Here we show that Golgi movements and furrow formation depend on cytoplasmic dynein. Furthermore, we demonstrate that Lava lamp (Lva), a golgin protein that is required for cellularization, specifically associates with dynein, dynactin, cytoplasmic linker protein-190 (CLIP-190) and Golgi spectrin, and is required for the dynein-dependent targeting of the secretory machinery. The Lva domains that bind these microtubule-dependent motility factors inhibit Golgi movement and cellularization in a live embryo injection assay. Our results provide new evidence that golgins promote dynein-based motility of Golgi membranes.
机译:果蝇的细胞化是胞质分裂的一种戏剧性形式,其中膜沟同时包裹合胞体胚胎的数千个皮层核,以产生极化的细胞层。卵裂沟的形成取决于高尔基体分泌物和微管(1-3)。在细胞化过程中,特定的高尔基体沿着微管移动,首先到达沟形成的位置,然后在新形成的细胞的顶端细胞质中积聚(3)。在这里,我们表明高尔基体运动和犁沟的形成取决于细胞质的动力蛋白。此外,我们证明了熔岩灯(Lva)是细胞化所需的一种高尔金蛋白,它与动力蛋白,动力蛋白,胞质接头蛋白190(CLIP-190)和高尔基血影蛋白特异性结合,并且是动力蛋白依赖性靶向所必需的分泌机械。结合这些微管依赖性运动因子的Lva结构域在活胚胎注射试验中抑制高尔基体运动和细胞化。我们的结果提供了新的证据,证明高尔基蛋白可促进基于高尔基膜的基于动力蛋白的运动。

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