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肌动蛋白支架诱导的弹塑性转变决定上皮折叠的不可逆性。

An actin bracket-induced elastoplastic transition determines epithelial folding irreversibility.

作者信息

Teranishi Aki, Mori Misato, Ichiki Rihoko, Toda Satoshi, Shioi Go, Okuda Satoru

机构信息

Division of Nano Life Science, Graduate School of Frontier Science Initiative, Kanazawa University, Kanazawa, Japan.

Nano Life Science Institute, Kanazawa University, Kanazawa, Japan.

出版信息

Nat Commun. 2024 Dec 12;15(1):10476. doi: 10.1038/s41467-024-54906-7.

Abstract

During morphogenesis, epithelial sheets undergo sequential folding to form three-dimensional organ structures. The resulting folds are often irreversible, ensuring that morphogenesis progresses in one direction. However, the mechanism establishing folding irreversibility remains unclear. Here, we report a mechanical property of epithelia that determines folding irreversibility. Using a mechanical assay, we demonstrate that long-term, high-curvature folding induces plastic, irreversible deformations, while short-term or low-curvature folding results in an elastic, shape-restoring response. This elastic-plastic transition occurs in a switch-like manner, with critical thresholds in folding curvature and duration. The transition is induced by F-actin accumulating into a bracket-like structure across the fold, triggered by cells sensing deformations via mechanosensitive signaling pathways, including TRPC 3/6-mediated calcium influx and ligand-independent EGFR activation. These results demonstrate that cells control epithelial folding irreversibility by detecting folding characteristics and adaptively switching between elastic and plastic responses, providing mechanical insight into the directionality of morphogenesis.

摘要

在形态发生过程中,上皮细胞层会经历一系列折叠以形成三维器官结构。由此产生的褶皱通常是不可逆的,这确保了形态发生朝着一个方向进行。然而,建立折叠不可逆性的机制仍不清楚。在这里,我们报告了上皮细胞的一种机械特性,它决定了折叠的不可逆性。通过机械检测,我们证明长期、高曲率折叠会诱导塑性、不可逆变形,而短期或低曲率折叠则会导致弹性、形状恢复响应。这种弹塑性转变以类似开关的方式发生,在折叠曲率和持续时间上有临界阈值。这种转变是由F-肌动蛋白在褶皱处积累形成支架状结构所诱导的,这是由细胞通过机械敏感信号通路感知变形触发的,包括TRPC 3/6介导的钙内流和非配体依赖性表皮生长因子受体激活。这些结果表明,细胞通过检测折叠特征并在弹性和塑性反应之间进行适应性切换来控制上皮折叠的不可逆性,为形态发生的方向性提供了机械学见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4af/11638340/ed8199e00775/41467_2024_54906_Fig1_HTML.jpg

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