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Par3/Bazooka and phosphoinositides regulate actin protrusion formation during Drosophila dorsal closure and wound healing

机译:Par3 /火箭筒和磷酸肌醇在果蝇背闭合和伤口愈合过程中调节肌动蛋白突起的形成

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摘要

Effective wound closure mechanisms are essential for maintenance of epithelial structure and function. The repair of wounded epithelia is primarily driven by the cells bordering the wound, which become motile after wounding, forming dynamic actin protrusions along the wound edge. The molecular mechanisms that trigger wound edge cells to become motile following tissue damage are not well understood. Using wound healing and dorsal closure in Drosophila, we identify a direct molecular link between changes in cell-cell adhesion at epithelial edges and induction of actin protrusion formation. We find that the scaffolding protein Par3/Bazooka and the lipid phosphatase Pten are specifically lost from cell-cell junctions at epithelial edges. This results in a localized accumulation of phosphatidylinositol 3,4,5-trisphosphate (PIP3), which promotes the formation of actin protrusions along the epithelial edge. Depleting PIP3 results in defective epithelial closure during both dorsal closure and wound healing. These data reveal a novel mechanism that directly couples loss of epithelial integrity to activation of epithelial closure. ? 2013.
机译:有效的伤口闭合机制对于维持上皮结构和功能至关重要。伤口上皮的修复主要由伤口周围的细胞驱动,这些细胞在伤口后变得活动,沿着伤口边缘形成动态的肌动蛋白突起。尚不完全清楚引起组织损伤后伤口边缘细胞运动的分子机制。使用果蝇的伤口愈合和背侧闭合,我们确定了上皮边缘细胞粘附的变化与肌动蛋白突起形成的诱导之间的直接分子联系。我们发现脚手架蛋白Par3 /火箭筒和脂质磷酸酶Pten专门从上皮边缘的细胞间连接中丢失。这导致磷脂酰肌醇3,4,5-三磷酸(PIP3)的局部积累,促进沿上皮边缘形成肌动蛋白突起。耗尽PIP3会在背侧闭合和伤口愈合过程中导致上皮闭合缺陷。这些数据揭示了新颖的机制,其直接将上皮完整性的丧失与上皮闭合的激活耦合。 ? 2013。

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