Developmental Biology, Institute Biology I, Faculty of Biology, Albert-Ludwigs-University Freiburg, D-79104 Freiburg, Germany.
Dev Cell. 2013 Mar 11;24(5):486-501. doi: 10.1016/j.devcel.2013.01.016.
Initiation of motile cell behavior in embryonic development occurs during late blastula stages when gastrulation begins. At this stage, the strong adhesion of blastomeres has to be modulated to enable dynamic behavior, similar to epithelial-to-mesenchymal transitions. We show that, in zebrafish maternal and zygotic (MZ)spg embryos mutant for the stem cell transcription factor Pou5f1/Oct4, which are severely delayed in the epiboly gastrulation movement, all blastomeres are defective in E-cadherin (E-cad) endosomal trafficking, and E-cad accumulates at the plasma membrane. We find that Pou5f1-dependent control of EGF expression regulates endosomal E-cad trafficking. EGF receptor may act via modulation of p120 activity. Loss of E-cad dynamics reduces cohesion of cells in reaggregation assays. Quantitative analysis of cell behavior indicates that dynamic E-cad endosomal trafficking is required for epiboly cell movements. We hypothesize that dynamic control of E-cad trafficking is essential to effectively generate new adhesion sites when cells move relative to each other.
在胚胎发育的晚期囊胚期,当原肠胚形成开始时,能动细胞行为的启动发生。在这个阶段,必须调节卵裂球的强粘附力,以使其能够进行动态行为,类似于上皮-间质转化。我们发现,在斑马鱼母体和合子(MZ)spg 胚胎中,干细胞转录因子 Pou5f1/Oct4 突变体,在胚外包裹原肠胚运动中严重延迟,所有卵裂球都在 E-钙粘蛋白(E-cad)内体运输中存在缺陷,并且 E-cad 在质膜上积累。我们发现,EGF 表达的 Pou5f1 依赖性控制调节内体 E-cad 运输。EGF 受体可能通过调节 p120 的活性起作用。E-cad 动力学的丧失降低了细胞在重新聚集测定中的内聚性。细胞行为的定量分析表明,内体 E-cad 运输的动态控制对于胚外细胞运动是必需的。我们假设,动态控制 E-cad 运输对于在细胞相互移动时有效地产生新的粘附位点是必不可少的。