UCL Institute of Ophthalmology, University College London, London EC1V 9EL, UK.
Clinical Physiology/Nutritional Medicine, Charité-Universitätsmedizin Berlin, Campus Benjamin Franklin, 12203 Berlin, Germany.
Cells. 2022 Nov 25;11(23):3775. doi: 10.3390/cells11233775.
Formation and maintenance of tissue barriers require the coordination of cell mechanics and cell-cell junction assembly. Here, we combined methods to modulate ECM stiffness and to measure mechanical forces on adhesion complexes to investigate how tight junctions regulate cell mechanics and epithelial morphogenesis. We found that depletion of the tight junction adaptor ZO-1 disrupted junction assembly and morphogenesis in an ECM stiffness-dependent manner and led to a stiffness-dependant reorganisation of active myosin. Both junction formation and morphogenesis were rescued by inhibition of actomyosin contractility. ZO-1 depletion also impacted mechanical tension at cell-matrix and E-cadherin-based cell-cell adhesions. The effect on E-cadherin also depended on ECM stiffness and correlated with effects of ECM stiffness on actin cytoskeleton organisation. However, ZO-1 knockout also revealed tension-independent functions of ZO-1. ZO-1-deficient cells could assemble functional barriers at low tension, but their tight junctions remained corrupted with strongly reduced and discontinuous recruitment of junctional components. Our results thus reveal that reciprocal regulation between ZO-1 and cell mechanics controls tight junction assembly and epithelial morphogenesis, and that, in a second, tension-independent step, ZO-1 is required to assemble morphologically and structurally fully assembled and functionally normal tight junctions.
组织屏障的形成和维持需要细胞力学和细胞-细胞连接组装的协调。在这里,我们结合了调节细胞外基质硬度的方法和测量黏附复合物上机械力的方法,来研究紧密连接如何调节细胞力学和上皮形态发生。我们发现,紧密连接衔接蛋白 ZO-1 的耗竭以细胞外基质硬度依赖的方式破坏了连接组装和形态发生,并导致活跃的肌球蛋白的硬度依赖性重排。肌动球蛋白收缩的抑制都能挽救连接的形成和形态发生。ZO-1 的耗竭也影响了细胞-基质和基于 E-钙黏蛋白的细胞-细胞黏附的机械张力。对 E-钙黏蛋白的影响也依赖于细胞外基质的硬度,并与细胞外基质硬度对肌动蛋白细胞骨架组织的影响相关。然而,ZO-1 敲除也揭示了 ZO-1 的张力独立功能。在低张力下,ZO-1 缺陷细胞可以组装功能性屏障,但它们的紧密连接仍然存在缺陷,连接成分的募集明显减少且不连续。因此,我们的结果表明,ZO-1 和细胞力学之间的相互调节控制着紧密连接的组装和上皮形态发生,并且在第二个不依赖张力的步骤中,ZO-1 是组装形态和结构上完全组装和功能正常的紧密连接所必需的。