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在早期非洲爪蟾胚胎中,有丝分裂和非有丝分裂上皮细胞之间钙黏蛋白上的肌动球蛋白产生的张力相似。

Actomyosin-generated tension on cadherin is similar between dividing and non-dividing epithelial cells in early Xenopus laevis embryos.

机构信息

CNRS, UMR 6290, Rennes, France.

Université de Rennes 1, Institut Génétique et Développement de Rennes, 2 Av du Pr Léon Bernard, 35043, Rennes, France.

出版信息

Sci Rep. 2017 Mar 22;7:45058. doi: 10.1038/srep45058.

Abstract

Epithelia represent a unique situation where polarized cells must maintain sufficiently strong cell-cell contacts to guarantee the epithelial integrity indispensable for barrier functions. Nevertheless, epithelia must also keep sufficient plasticity which is crucial during development and morphogenesis. Adherens junctions and mechanical forces produced by the actomyosin cytoskeleton are major players for epithelial integrity maintenance and plasticity regulations. To understand how the epithelium is able to meet such a challenge, it is indispensable to determine how cellular junctions and mechanical forces acting at adherens junctions are regulated. Here, we investigate the tensile forces acting on adherens junctions via cadherin during cell division in the Xenopus embryos epithelium. Using the recently developed E-cadherin FRET tension sensor and a fastFLIM prototype microscope, we were able to measure mechanical forces applied on cadherin at cell-cell junctions. We have shown that the Xenopus epithelium is under tension, approximately 3 pN which remains stable, indicating that tensile forces acting on cadherin at the adherens junction are at equilibrium. Unexpectedly, mechanical tension across cadherin was similar between dividing and non-dividing epithelial cells.

摘要

上皮组织代表了一种独特的情况,即极化细胞必须保持足够强的细胞-细胞接触,以保证上皮完整性,这对于屏障功能是必不可少的。然而,上皮组织还必须保持足够的可塑性,这在发育和形态发生过程中至关重要。黏附连接和肌动球蛋白细胞骨架产生的机械力是维持上皮完整性和调节可塑性的主要因素。为了了解上皮组织如何能够应对这一挑战,确定细胞连接和黏附连接处的机械力如何受到调节是必不可少的。在这里,我们通过钙黏蛋白研究了 Xenopus 胚胎上皮细胞分裂过程中黏附连接处的张力。使用最近开发的 E-钙黏蛋白 FRET 张力传感器和快速 FLIM 原型显微镜,我们能够测量细胞-细胞连接处钙黏蛋白上的机械力。我们已经表明,Xenopus 上皮组织处于张力下,约为 3 pN,且保持稳定,这表明黏附连接处钙黏蛋白上的张力处于平衡状态。出乎意料的是,分裂和非分裂上皮细胞之间钙黏蛋白上的机械张力相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1613/5361196/9e1197c4f3ab/srep45058-f1.jpg

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