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黏着连接作为新兴组织力学的分子调控者。

Adherens junctions as molecular regulators of emergent tissue mechanics.

机构信息

Cluster of Excellence Physics of Life, TU Dresden, Dresden, Germany.

Max Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.

出版信息

Nat Rev Mol Cell Biol. 2024 Apr;25(4):252-269. doi: 10.1038/s41580-023-00688-7. Epub 2023 Dec 13.

Abstract

Tissue and organ development during embryogenesis relies on the collective and coordinated action of many cells. Recent studies have revealed that tissue material properties, including transitions between fluid and solid tissue states, are controlled in space and time to shape embryonic structures and regulate cell behaviours. Although the collective cellular flows that sculpt tissues are guided by tissue-level physical changes, these ultimately emerge from cellular-level and subcellular-level molecular mechanisms. Adherens junctions are key subcellular structures, built from clusters of classical cadherin receptors. They mediate physical interactions between cells and connect biochemical signalling to the physical characteristics of cell contacts, hence playing a fundamental role in tissue morphogenesis. In this Review, we take advantage of the results of recent, quantitative measurements of tissue mechanics to relate the molecular and cellular characteristics of adherens junctions, including adhesion strength, tension and dynamics, to the emergent physical state of embryonic tissues. We focus on systems in which cell-cell interactions are the primary contributor to morphogenesis, without significant contribution from cell-matrix interactions. We suggest that emergent tissue mechanics is an important direction for future research, bridging cell biology, developmental biology and mechanobiology to provide a holistic understanding of morphogenesis in health and disease.

摘要

胚胎发生过程中的组织和器官发育依赖于许多细胞的集体和协调作用。最近的研究表明,组织材料特性,包括从流体到固体组织状态的转变,在空间和时间上受到控制,以塑造胚胎结构并调节细胞行为。尽管塑造组织的集体细胞流受到组织水平物理变化的指导,但这些最终还是从细胞水平和亚细胞水平的分子机制中产生的。黏附连接是由经典钙黏蛋白受体簇构成的关键亚细胞结构。它们介导细胞间的物理相互作用,并将生化信号与细胞接触的物理特性联系起来,因此在组织形态发生中起着至关重要的作用。在这篇综述中,我们利用最近对组织力学的定量测量结果,将黏附连接的分子和细胞特征(包括粘附强度、张力和动力学)与胚胎组织的新兴物理状态联系起来。我们专注于细胞间相互作用是形态发生的主要贡献者的系统,而细胞-基质相互作用的贡献较小。我们认为,新兴的组织力学是未来研究的一个重要方向,它将细胞生物学、发育生物学和机械生物学联系起来,为健康和疾病中的形态发生提供整体理解。

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