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首页> 外文期刊>Developmental cell >Tissue deformation modulates twist expression to determine anterior midgut differentiation in Drosophila embryos.
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Tissue deformation modulates twist expression to determine anterior midgut differentiation in Drosophila embryos.

机译:组织变形调节扭曲表达以确定果蝇胚胎中肠中段分化。

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摘要

Mechanical deformations associated with embryonic morphogenetic movements have been suggested to actively participate in the signaling cascades regulating developmental gene expression. Here we develop an appropriate experimental approach to ascertain the existence and the physiological relevance of this phenomenon. By combining the use of magnetic tweezers with in vivo laser ablation, we locally control physiologically relevant deformations in wild-type Drosophila embryonic tissues. We demonstrate that the deformations caused by germ band extension upregulate Twist expression in the stomodeal primordium. We find that stomodeal compression triggers Src42A-dependent nuclear translocation of Armadillo/beta-catenin, which is required for Twist mechanical induction in the stomodeum. Finally, stomodeal-specific RNAi-mediated silencing of Twist during compression impairs the differentiation of midgut cells, resulting in larval lethality. These experiments show that mechanically induced Twist upregulation in stomodeal cells is necessary for subsequent midgut differentiation.
机译:与胚胎形态发生运动相关的机械变形已被建议积极参与调节发育基因表达的信号级联反应。在这里,我们开发一种适当的实验方法来确定这种现象的存在和生理相关性。通过结合使用磁镊子与体内激光消融,我们局部控制野生型果蝇胚胎组织中的生理相关变形。我们证明了由细菌谱带延伸引起的变形上调了原模式的Twist表达。我们发现,stomodeal压缩触发犰狳/β-catenin的Src42A依赖性核易位,这是stomodeum中Twist机械诱导所必需的。最后,在压缩过程中,由模式依赖的RNAi介导的Twist沉默会损害中肠细胞的分化,从而导致幼虫致死率。这些实验表明,机械诱导的stomode细胞中的Twist上调对于随后的中肠分化是必要的。

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