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首页> 外文期刊>Developmental biology >The cell adhesion-associated protein Git2 regulates morphogenetic movements during zebrafish embryonic development.
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The cell adhesion-associated protein Git2 regulates morphogenetic movements during zebrafish embryonic development.

机译:细胞粘附相关蛋白Git2调节斑马鱼胚胎发育过程中的形态发生运动。

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Signaling through cell adhesion complexes plays a critical role in coordinating cytoskeletal remodeling necessary for efficient cell migration. During embryonic development, normal morphogenesis depends on a series of concerted cell movements; but the roles of cell adhesion signaling during these movements are poorly understood. The transparent zebrafish embryo provides an excellent system to study cell migration during development. Here, we have identified zebrafish git2a and git2b, two new members of the GIT family of genes that encode ArfGAP proteins associated with cell adhesions. Loss-of-function studies revealed an essential role for Git2a in zebrafish cell movements during gastrulation. Time-lapse microscopy analysis demonstrated that antisense depletion of Git2a greatly reduced or arrested cell migration towards the vegetal pole of the embryo. These defects were rescued by expression of chicken GIT2, indicating a specific and conserved role for Git2 in controlling embryonic cell movements. Git2a knockdown embryos showed defects in cell morphology that were associated with reduced cell contractility. We show that Git2a is required for phosphorylation of myosin light chain (MLC), which regulates myosin II-mediated cell contractility. Consistent with this, embryos treated with Blebbistatin-a small molecule inhibitor for myosin II activity-exhibited cell movement defects similar to git2a knockdown embryos. These observations provide in vivo evidence of a physiologic role for Git2a in regulating cell morphogenesis and directed cell migration via myosin II activation during zebrafish embryonic development.
机译:通过细胞粘附复合物发出的信号在协调有效细胞迁移所需的细胞骨架重塑中起着至关重要的作用。在胚胎发育过程中,正常的形态发生取决于一系列协调的细胞运动。但是在这些运动过程中细胞粘附信号的作用了解得很少。透明的斑马鱼胚胎为研究发育过程中的细胞迁移提供了一个极好的系统。在这里,我们确定了斑马鱼git2a和git2b,这是GIT基因家族的两个新成员,它们编码与细胞粘附相关的ArfGAP蛋白。功能丧失的研究表明,Git2a在胃排卵期间在斑马鱼细胞运动中起着至关重要的作用。延时显微镜分析表明,Git2a的反义耗竭大大减少或阻止了细胞向胚胎植物性极的迁移。这些缺陷通过鸡GIT2的表达得以挽救,表明Git2在控制胚胎细胞运动中具有特定且保守的作用。 Git2a组合式胚胎显示细胞形态缺陷,与细胞收缩力降低有关。我们表明,Git2a是肌球蛋白轻链(MLC)磷酸化所必需的,它调节肌球蛋白II介导的细胞收缩力。与此一致的是,用Blebbistatin(一种用于肌球蛋白II活性的小分子抑制剂)处理的胚胎表现出类似于git2a敲低胚胎的细胞运动缺陷。这些观察结果提供体内证据,证明Git2a在斑马鱼胚胎发育过程中通过肌球蛋白II激活调节细胞形态发生和定向细胞迁移。

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