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首页> 外文期刊>Development >The epithelial-mesenchymal transition of the Drosophila mesoderm requires the Rho GTP exchange factor Pebble.
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The epithelial-mesenchymal transition of the Drosophila mesoderm requires the Rho GTP exchange factor Pebble.

机译:果蝇中胚层的上皮-间充质转变需要Rho GTP交换因子卵石。

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Drosophila pebble (pbl) encodes a Rho-family GTP exchange factor (GEF) required for cytokinesis. The accumulation of high levels of PBL protein during interphase and the developmentally regulated expression of pbl in mesodermal tissues suggested that the primary cytokinetic mutant phenotype might be masking other roles. Using various muscle differentiation markers, we found that Even skipped (EVE) expression in the dorsal mesoderm is greatly reduced in pbl mutant embryos. EVE expression in the dorsalmost mesodermal cells is induced in response to DPP secreted by the dorsal epidermal cells. Further analysis revealed that this phenotype is likely to be a consequence of an earlier defect. pbl mutant mesodermal cells fail to undergo the normal epithelial-mesenchymal transition (EMT) and dorsal migration that follows ventral furrow formation. This phenotype is not a secondary consequence of failed cytokinesis, as it is rescued by a mutant form of pbl that does not rescue the cytokinetic defect. In wild-typeembryos, newly invaginated cells at the lateral edges of the mesoderm extend numerous protrusions. In pbl mutant embryos, however, cells appear more tightly adhered to their neighbours and extend very few protrusions. Consistent with the dependence of the mesoderm EMT and cytokinesis on actin organisation, the GTP exchange function of the PBL RhoGEF is required for both processes. By contrast, the N-terminal BRCT domains of PBL are required only for the cytokinetic function of PBL. These studies reveal that a novel PBL-mediated intracellular signalling pathway operates in mesodermal cells during the transition from an epithelial to migratory mesenchymal morphology during gastrulation.
机译:果蝇卵石(pbl)编码胞质分裂所需的Rho家族GTP交换因子(GEF)。间期过程中高水平PBL蛋白的积累和中胚层组织中pbl的发育调控表达表明,主要的细胞动力学突变表型可能掩盖了其他作用。使用各种肌肉分化标记,我们发现pbl突变体胚胎的中胚层中甚至跳跃(EVE)表达也大大降低。 EVE在最背面的中胚层细胞中表达,是对由背面表皮细胞分泌的DPP的反应所诱导。进一步的分析表明,该表型可能是早期缺陷的结果。 pbl突变的中胚层细胞无法进行正常的上皮-间质转化(EMT)和后腹沟形成后的背向迁移。该表型不是胞质分裂失败的次要结果,因为它是由不挽救细胞动力学缺陷的pbl突变体形式挽救的。在野生型胚胎中,中胚层外侧边缘的新近侵入的细胞延伸出许多突起。然而,在pbl突变体胚胎中,细胞似乎更紧密地粘附于它们的邻居并延伸出很少的突起。与中胚层EMT和胞质分裂对肌动蛋白组织的依赖性一致,两个过程都需要PBL RhoGEF的GTP交换功能。相比之下,PBL的N末端BRCT结构域仅是PBL的细胞动力学功能所必需的。这些研究揭示了一种新的PBL介导的细胞内信号转导途径,在上皮形成过程中从上皮向迁移性间充质形态转变过程中,在中胚层细胞中起作用。

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