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细胞内力-极性反馈环诱导的自主上皮折叠。

Autonomous epithelial folding induced by an intracellular mechano-polarity feedback loop.

机构信息

Laboratory for Physical Biology, RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.

International Center for Wound Repair and Regeneration, National Cheng Kung University, Tainan, Taiwan.

出版信息

PLoS Comput Biol. 2021 Dec 6;17(12):e1009614. doi: 10.1371/journal.pcbi.1009614. eCollection 2021 Dec.

Abstract

Epithelial tissues form folded structures during embryonic development and organogenesis. Whereas substantial efforts have been devoted to identifying mechanical and biochemical mechanisms that induce folding, whether and how their interplay synergistically shapes epithelial folds remains poorly understood. Here we propose a mechano-biochemical model for dorsal fold formation in the early Drosophila embryo, an epithelial folding event induced by shifts of cell polarity. Based on experimentally observed apical domain homeostasis, we couple cell mechanics to polarity and find that mechanical changes following the initial polarity shifts alter cell geometry, which in turn influences the reaction-diffusion of polarity proteins, thus forming a feedback loop between cell mechanics and polarity. This model can induce spontaneous fold formation in silico, recapitulate polarity and shape changes observed in vivo, and confer robustness to tissue shape change against small fluctuations in mechanics and polarity. These findings reveal emergent properties of a developing epithelium under control of intracellular mechano-polarity coupling.

摘要

在胚胎发育和器官发生过程中,上皮组织会形成折叠结构。尽管已经投入了大量的努力来识别诱导折叠的机械和生化机制,但它们的相互作用如何协同地塑造上皮折叠仍然知之甚少。在这里,我们提出了一个早期果蝇胚胎背侧折叠形成的机械生化模型,这是一个由细胞极性变化引起的上皮折叠事件。基于实验观察到的顶域稳态,我们将细胞力学与极性联系起来,发现初始极性变化后的力学变化改变了细胞的几何形状,而这反过来又影响了极性蛋白的反应扩散,从而在细胞力学和极性之间形成了一个反馈回路。该模型可以在计算机上诱导自发折叠形成,再现体内观察到的极性和形状变化,并赋予组织形状变化对力学和极性小波动的鲁棒性。这些发现揭示了在细胞内机械极性耦合控制下发育中上皮的涌现特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd90/8675927/f923eea01f06/pcbi.1009614.g001.jpg

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