Vedula Sri Ram Krishna, Peyret Grégoire, Cheddadi Ibrahim, Chen Tianchi, Brugués Agustí, Hirata Hiroaki, Lopez-Menendez Horacio, Toyama Yusuke, de Almeida Luís Neves, Trepat Xavier, Lim Chwee Teck, Ladoux Benoit
Mechanobiology Institute, National University of Singapore, Singapore 117411, Singapore.
1] Institut Jacques Monod (IJM), CNRS UMR 7592 and Université Paris Diderot, 75013 Paris, France [2] Unitat de Biofísica i Bioenginyeria, Facultat de Medicina, Universitat de Barcelona, and CIBERES, 08036 Barcelona, Spain.
Nat Commun. 2015 Jan 22;6:6111. doi: 10.1038/ncomms7111.
The closure of gaps within epithelia is crucial to maintain its integrity during biological processes such as wound healing and gastrulation. Depending on the distribution of extracellular matrix, gap closure occurs through assembly of multicellular actin-based contractile cables or protrusive activity of border cells into the gap. Here we show that the supracellular actomyosin contractility of cells near the gap edge exerts sufficient tension on the surrounding tissue to promote closure of non-adherent gaps. Using traction force microscopy, we observe that cell-generated forces on the substrate at the gap edge first point away from the centre of the gap and then increase in the radial direction pointing into the gap as closure proceeds. Combining with numerical simulations, we show that the increase in force relies less on localized purse-string contractility and more on large-scale remodelling of the suspended tissue around the gap. Our results provide a framework for understanding the assembly and the mechanics of cellular contractility at the tissue level.
上皮细胞间缝隙的闭合对于在诸如伤口愈合和原肠胚形成等生物学过程中维持其完整性至关重要。根据细胞外基质的分布情况,缝隙闭合通过基于肌动蛋白的多细胞收缩索的组装或边界细胞向缝隙内的突出活动来实现。在此,我们表明缝隙边缘附近细胞的超细胞肌动球蛋白收缩性会对周围组织施加足够的张力,以促进非粘附性缝隙的闭合。利用牵引力显微镜,我们观察到缝隙边缘处细胞在底物上产生的力最初指向远离缝隙中心的方向,然后随着闭合过程的进行,在指向缝隙内部的径向方向上增加。结合数值模拟,我们表明力的增加较少依赖于局部的束带收缩性,而更多地依赖于缝隙周围悬浮组织的大规模重塑。我们的结果为理解组织水平上细胞收缩性的组装和力学提供了一个框架。