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Surface mechanics mediate pattern formation in the developing retina

机译:表面力学介导视网膜发育中的图案形成

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Pattern formation of biological structures involves organizing different types of cells into a spatial configuration. In this study, we investigate the physical basis of biological patterning of the Drosophila retina in vivo. We demonstrate that E- and N-cadherins mediate apical adhesion between retina epithelial cells. Differential expression of N-cadherin within a sub-group of retinal cells (cone cells) causes them to form an overall shape that minimizes their surface contact with surrounding cells. The cells within this group, in both normal and experimentally manipulated conditions, pack together in the same way as soap bubbles do. The shaping of the cone cell group and packing of its components precisely imitate the physical tendency for surfaces to be minimized. Thus, simple patterned expression of N-cadherin results in a complex spatial pattern of cells owing to cellular surface mechanics.
机译:生物结构的模式形成涉及将不同类型的细胞组织成空间构型。在这项研究中,我们调查了果蝇视网膜体内生物学模式的物理基础。我们证明E-和N-钙粘着蛋白介导视网膜上皮细胞之间的根尖粘连。 N-钙黏着蛋白在视网膜细胞(圆锥细胞)的一个亚组中的差异表达使它们形成总体形状,从而使它们与周围细胞的表面接触最小化。在正常和实验条件下,该组中的细胞以与肥皂泡相同的方式堆积在一起。视锥细胞组的形状及其组件的填充精确地模仿了使表面最小化的物理趋势。因此,由于细胞表面力学,N-钙粘着蛋白的简单模式表达导致细胞的复杂空间模式。

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