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A Highlights from MBoC Selection: Membrane dynamics during cellular wound repair

机译:MBoC选择的亮点:细胞伤口修复过程中的膜动力学

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摘要

Cells rapidly reseal after damage, but how they do so is unknown. It has been hypothesized that resealing occurs due to formation of a patch derived from rapid fusion of intracellular compartments at the wound site. However, patching has never been directly visualized. Here we study membrane dynamics in wounded Xenopus laevis oocytes at high spatiotemporal resolution. Consistent with the patch hypothesis, we find that damage triggers rampant fusion of intracellular compartments, generating a barrier that limits influx of extracellular dextrans. Patch formation is accompanied by compound exocytosis, local accumulation and aggregation of vesicles, and rupture of compartments facing the external environment. Subcellular patterning is evident as annexin A1, dysferlin, diacylglycerol, active Rho, and active Cdc42 are recruited to compartments confined to different regions around the wound. We also find that a ring of elevated intracellular calcium overlaps the region where membrane dynamics are most evident and persists for several minutes. The results provide the first direct visualization of membrane patching during membrane repair, reveal novel features of the repair process, and show that a remarkable degree of spatial patterning accompanies damage-induced membrane dynamics.
机译:损伤后细胞会迅速重新密封,但如何进行尚不清楚。假设由于在伤口部位细胞内区室的快速融合而形成的贴剂的形成而导致重新密封。但是,从未直接看到补丁。在这里我们研究高时空分辨率受伤非洲爪蟾卵母细胞的膜动力学。与补丁假设一致,我们发现损害触发了细胞内区室的猖fusion融合,产生了限制细胞外葡聚糖流入的屏障。斑块的形成伴随着化合物的胞吐作用,小泡的局部积累和聚集以及面向外部环境的隔室破裂。由于膜联蛋白A1,dysferlin,二酰基甘油,活性Rho和活性Cdc42被募集到局限于伤口周围不同区域的区室,因此亚细胞模式很明显。我们还发现,升高的细胞内钙环与膜动力学最明显的区域重叠并持续了几分钟。结果提供了膜修复过程中膜修补的第一个直接可视化,揭示了修复过程的新颖特征,并显示出明显程度的空间构图伴随着损伤诱导的膜动力学。

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