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Single cell wound repair Dealing with life's little traumas

机译:单细胞伤口修复处理生活中的小创伤

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摘要

Cell wounding is a common event in the life of many cell types, and the capacity of the cell to repair day-to-day wear-and-tear injuries, as well as traumatic ones, is fundamental for maintaining tissue integrity. Cell wounding is most frequent in tissues exposed to high levels of stress. Survival of such plasma membrane disruptions requires rapid resealing to prevent the loss of cytosolic components, to block Ca2+ influx and to avoid cell death. In addition to patching the torn membrane, plasma membrane and cortical cytoskeleton remodeling are required to restore cell function. Although a general understanding of the cell wound repair process is in place, the underlying mechanisms of each step of this response are not yet known. We have developed amodel to study single cell wound repair using the early Drosophila embryo. Our system combines genetics and live imaging tools, allowing us to dissect in vivo the dynamics of the single cell wound response. We have shown that cell wound repair in Drosophila requires the coordinated activities of plasma membrane and cytoskeleton components. Furthermore, we identified an unexpected role for E-cadherin as a link between the contractile actomyosin ring and the newly formed plasma membrane plug.
机译:细胞受伤是许多细胞类型生命中的常见事件,细胞修复日常磨损和创伤损伤的能力对于维持组织完整性至关重要。细胞暴露在暴露于高水平压力的组织中最常见。这种质膜破坏的生存需要快速重新密封,以防止胞浆成分的损失,阻断Ca2 +流入并避免细胞死亡。除了修补破膜外,还需要质膜和皮层细胞骨架重塑来恢复细胞功能。尽管已经对细胞伤口修复过程有了大致的了解,但是该反应每个步骤的潜在机制尚不清楚。我们已经开发出一种模型来研究使用果蝇早期胚胎的单细胞伤口修复。我们的系统结合了遗传学和实时成像工具,使我们能够在体内解剖单细胞伤口反应的动力学。我们已经表明果蝇中的细胞伤口修复需要质膜和细胞骨架成分的协调活动。此外,我们发现E-钙黏着蛋白作为收缩性肌动球蛋白环与新形成的质膜栓之间的链接具有出乎意料的作用。

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