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Cytoskeletal tension and Bazooka tune interface geometry to ensure fusion fidelity and sheet integrity during dorsal closure

机译:细胞骨骼张力和火箭筒调整界面几何形状以确保在背闭合过程中融合保真度和薄片完整性

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摘要

Epithelial fusion establishes continuity between the separated flanks of epithelial sheets. Despite its importance in creating resilient barriers, the mechanisms that ensure stable continuity and preserve morphological and molecular symmetry upon fusion remain unclear. Using the segmented embryonic epidermis whose flanks fuse during Drosophila dorsal closure, we demonstrate that epidermal flanks modulate cell numbers and geometry of their fusing fronts to achieve fusion fidelity. While fusing flanks become more matched for both parameters before fusion, differences persisting at fusion are corrected by modulating fusing front width within each segment to ensure alignment of segment boundaries. We show that fusing cell interfaces are remodelled from en-face contacts at fusion to an interlocking arrangement after fusion, and demonstrate that changes in interface length and geometry are dependent on the spatiotemporal regulation of cytoskeletal tension and Bazooka/Par3. Our work uncovers genetically constrained and mechanically triggered adaptive mechanisms contributing to fusion fidelity and epithelial continuity.
机译:上皮融合在上皮片的分离侧面之间建立连续性。尽管在创建弹性屏障方面很重要,但是确保融合时保持稳定连续性并保持形态和分子对称性的机制仍然不清楚。使用果蝇背闭合期间其侧面融合的节段胚胎表皮,我们证明了表皮侧面调节其融合前沿的细胞数量和几何形状,以实现融合保真度。虽然融合前的融合侧翼在这两个参数上变得更加匹配,但通过调制每个片段内的融合前沿宽度以确保片段边界对齐,可以纠正融合时持久存在的差异。我们显示融合细胞界面从融合时的面接触重塑到融合后的互锁布置,并证明界面长度和几何形状的变化取决于细胞骨架张力和火箭筒/ Par3的时空调节。我们的工作揭示了遗传约束和机械触发的适应机制,这些机制有助于融合保真度和上皮连续性。

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