首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Imaging of Cell Shape Alteration and Cell Movement in Drosophila Gastrulation Using DE-cadherin Reporter Transgenic Flies
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Imaging of Cell Shape Alteration and Cell Movement in Drosophila Gastrulation Using DE-cadherin Reporter Transgenic Flies

机译:使用DE-钙粘着蛋白记者转基因果蝇的果蝇胃中细胞形状改变和细胞运动的成像。

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摘要

Gastrulation is the first set of morphologically dynamic events that occur during the embryonic development of multicellular animals such as Drosophila. This morphological alteration is also recognized as epithelial to mesenchymal transition (EMT). Dysregulation of EMT is associated with fibrosis and cancer metastasis. There is emerging evidence that EMT is controlled by a number of molecular mechanisms. As such, many key genes that control apical constriction are also known to be important factors in the EMT observed in cancer metastasis. Like EMT during Drosophila gastrulation, epithelial cells can be induced to change their shape and be reprogrammed to redirect cell fate towards various other cell types. Here we provide a robust imaging method of Drosophila gastrulation to assay the initiation of morphogenetic cellular movements and cell fate identification during this stage of embryonic development. Using this method, we identify cell rearrangement at the time of gastrulation and demonstrate the importance of apical constriction during gastrulation using GFP labeled DE-cadherin.
机译:放胃是在多细胞动物如果蝇的胚胎发育过程中发生的第一组形态学动态事件。这种形态学改变也被认为是上皮到间质转化(EMT)。 EMT的失调与纤维化和癌症转移有关。新兴证据表明,EMT受许多分子机制控制。这样,许多已知的控制根尖收缩的关键基因也是在癌症转移中观察到的EMT中的重要因素。像果蝇胃化期间的EMT一样,上皮细胞可以被诱导改变其形状,并被重新编程以将细胞命运重定向至其他各种细胞类型。在这里,我们提供了一种果蝇胃气健壮的成像方法,以测定在胚胎发育的这一阶段中形态发生细胞运动的启动和细胞命运的鉴定。使用这种方法,我们确定了胃重塑时细胞的重排,并证明了使用GFP标记的DE-钙黏着蛋白在胃重塑过程中根尖收缩的重要性。

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