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NADPH 氧化酶衍生的活性氧对于斑马鱼胚外膜形成过程中的细胞骨架组织、E-钙黏蛋白的正确定位和细胞迁移是必需的。

NADPH-Oxidase-derived reactive oxygen species are required for cytoskeletal organization, proper localization of E-cadherin and cell motility during zebrafish epiboly.

机构信息

Departamento de Genética del Desarrollo y Fisiología Molecular, Mexico.

Centro de Investigaciones Químicas-IICBA, Universidad Autónoma del Estado de Morelos, Avenida Universidad #2001, Colonia Chamilpa, Cuernavaca, Morelos C.P. 62209, Mexico.

出版信息

Free Radic Biol Med. 2019 Jan;130:82-98. doi: 10.1016/j.freeradbiomed.2018.10.416. Epub 2018 Oct 17.

Abstract

Cell movements are essential for morphogenesis during animal development. Epiboly is the first morphogenetic process in zebrafish in which cells move en masse to thin and spread the deep and enveloping cell layers of the blastoderm over the yolk cell. While epiboly has been shown to be controlled by complex molecular networks, the contribution of reactive oxygen species (ROS) to this process has not previously been studied. Here, we show that ROS are required for epiboly in zebrafish. Visualization of ROS in whole embryos revealed dynamic patterns during epiboly progression. Significantly, inhibition of NADPH oxidase activity leads to a decrease in ROS formation, delays epiboly, alters E-cadherin and cytoskeleton patterns and, by 24 h post-fertilization, decreases embryo survival, effects that are rescued by hydrogen peroxide treatment. Our findings suggest that a delicate ROS balance is required during early development and that disruption of that balance interferes with cell adhesion, leading to defective cell motility and epiboly progression.

摘要

细胞运动对于动物发育过程中的形态发生至关重要。胚外包裹是斑马鱼中第一个形态发生过程,在此过程中,细胞整体移动,使胚盘的深层和包裹性细胞层变薄并在卵黄细胞上展开。虽然已经表明胚外包裹受到复杂的分子网络的控制,但之前尚未研究活性氧(ROS)对此过程的贡献。在这里,我们表明 ROS 是斑马鱼胚外包裹所必需的。在整个胚胎中对 ROS 的可视化显示了在胚外包裹进展过程中的动态模式。值得注意的是,抑制 NADPH 氧化酶活性会导致 ROS 形成减少,延迟胚外包裹,改变 E-钙粘蛋白和细胞骨架模式,并且在受精后 24 小时,胚胎存活率降低,这些效应可以通过过氧化氢处理得到挽救。我们的研究结果表明,在早期发育过程中需要精细的 ROS 平衡,而破坏这种平衡会干扰细胞黏附,导致细胞运动和胚外包裹进展受损。

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