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外侧外胚层在中胚层内陷中作用的证据。

Evidence for a Role of the Lateral Ectoderm in Mesoderm Invagination.

作者信息

Guo Hanqing, Huang Shicheng, He Bing

机构信息

Department of Biological Sciences, Dartmouth College, Hanover, NH, United States.

出版信息

Front Cell Dev Biol. 2022 Apr 25;10:867438. doi: 10.3389/fcell.2022.867438. eCollection 2022.

Abstract

The folding of two-dimensional epithelial sheets into specific three-dimensional structures is a fundamental tissue construction mechanism in animal development. A common mechanism that mediates epithelial folding is apical constriction, the active shrinking of cell apices driven by actomyosin contractions. It remains unclear whether cells outside of the constriction domain also contribute to folding. During mesoderm invagination, ventrally localized mesoderm epithelium undergoes apical constriction and subsequently folds into a furrow. While the critical role of apical constriction in ventral furrow formation has been well demonstrated, it remains unclear whether, and if so, how the laterally localized ectodermal tissue adjacent to the mesoderm contributes to furrow invagination. In this study, we combine experimental and computational approaches to test the potential function of the ectoderm in mesoderm invagination. Through laser-mediated, targeted disruption of cell formation prior to gastrulation, we found that the presence of intact lateral ectoderm is important for the effective transition between apical constriction and furrow invagination in the mesoderm. In addition, using a laser-ablation approach widely used for probing tissue tension, we found that the lateral ectodermal tissues exhibit signatures of tissue compression when ablation was performed shortly before the onset of mesoderm invagination. These observations led to the hypothesis that in-plane compression from the surrounding ectoderm facilitates mesoderm invagination by triggering buckling of the mesoderm epithelium. In support of this notion, we show that the dynamics of tissue flow during mesoderm invagination displays characteristic of elastic buckling, and this tissue dynamics can be recapitulated by combining local apical constriction and global compression in a simulated elastic monolayer. We propose that mesoderm invagination is achieved through epithelial buckling jointly mediated by apical constriction in the mesoderm and compression from the neighboring ectoderm.

摘要

二维上皮细胞层折叠形成特定的三维结构是动物发育过程中的一种基本组织构建机制。介导上皮细胞折叠的一种常见机制是顶端收缩,即由肌动球蛋白收缩驱动的细胞顶端的主动收缩。目前尚不清楚收缩区域外的细胞是否也对折叠有贡献。在中胚层内陷过程中,位于腹侧的中胚层上皮会发生顶端收缩,随后折叠形成一条沟。虽然顶端收缩在腹侧沟形成中的关键作用已得到充分证明,但尚不清楚与中胚层相邻的侧向定位的外胚层组织是否以及如何促进沟的内陷。在本研究中,我们结合实验和计算方法来测试外胚层在中胚层内陷中的潜在功能。通过在原肠胚形成之前用激光介导的靶向细胞破坏,我们发现完整的外侧外胚层的存在对于中胚层顶端收缩和沟内陷之间的有效转变很重要。此外,使用广泛用于探测组织张力的激光消融方法,我们发现当在中胚层内陷开始前不久进行消融时,外侧外胚层组织表现出组织压缩的特征。这些观察结果引出了一个假设,即来自周围外胚层的平面内压缩通过触发中胚层上皮的屈曲来促进中胚层内陷。为支持这一观点,我们表明中胚层内陷过程中的组织流动动力学显示出弹性屈曲的特征,并且这种组织动力学可以通过在模拟弹性单层中结合局部顶端收缩和全局压缩来重现。我们提出,中胚层内陷是通过中胚层顶端收缩和相邻外胚层压缩共同介导的上皮屈曲实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3767/9081377/931a338a6aa2/fcell-10-867438-g001.jpg

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