CECAD Cluster of Excellence, University of Cologne, Cologne, Germany.
Cell and Developmental Biology, Faculty of Medicine, Center of Human and Molecular Biology (ZHMB), Saarland University, Homburg, Germany.
EMBO J. 2021 Jun 15;40(12):e106787. doi: 10.15252/embj.2020106787. Epub 2021 May 17.
Eukaryotic development relies on dynamic cell shape changes and segregation of fate determinants to achieve coordinated compartmentalization at larger scale. Studies in invertebrates have identified polarity programmes essential for morphogenesis; however, less is known about their contribution to adult tissue maintenance. While polarity-dependent fate decisions in mammals utilize molecular machineries similar to invertebrates, the hierarchies and effectors can differ widely. Recent studies in epithelial systems disclosed an intriguing interplay of polarity proteins, adhesion molecules and mechanochemical pathways in tissue organization. Based on major advances in biophysics, genome editing, high-resolution imaging and mathematical modelling, the cell polarity field has evolved to a remarkably multidisciplinary ground. Here, we review emerging concepts how polarity and cell fate are coupled, with emphasis on tissue-scale mechanisms, mechanobiology and mammalian models. Recent findings on the role of polarity signalling for tissue mechanics, micro-environmental functions and fate choices in health and disease will be summarized.
真核生物的发育依赖于动态的细胞形状变化和命运决定因素的分离,以实现更大规模的协调区室化。无脊椎动物的研究已经确定了对形态发生至关重要的极性程序;然而,关于它们对成年组织维持的贡献知之甚少。虽然哺乳动物中依赖于极性的命运决定利用了与无脊椎动物相似的分子机制,但层次结构和效应物可能有很大的不同。上皮系统的最近研究揭示了极性蛋白、粘附分子和机械化学途径在组织组织中的有趣相互作用。基于生物物理学、基因组编辑、高分辨率成像和数学建模的主要进展,细胞极性领域已经发展成为一个非常多学科的领域。在这里,我们回顾了新兴的概念,即极性和细胞命运是如何耦合的,重点是组织尺度的机制、机械生物学和哺乳动物模型。还将总结极性信号在组织力学、微环境功能和健康与疾病中的命运选择中的作用的最新发现。