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Wnt/PCP signaling controls intracellular position of MTOCs during gastrulation convergence and extension movements

机译:Wnt / PCP信号传导控制胃肠道汇聚和伸展运动过程中MTOC的细胞内位置

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摘要

During vertebrate gastrulation, convergence and extension cell movements are coordinated with the anteroposterior and mediolateral embryonic axes. Wnt planar cell polarity (Wnt/PCP) signaling polarizes the motile behaviors of cells with respect to the anteroposterior embryonic axis. Understanding how Wnt/PCP signaling mediates convergence and extension (C&E) movements requires analysis of the mechanisms employed to alter cell morphology and behavior with respect to embryonic polarity. Here, we examine the interactions between the microtubule cytoskeleton and Wnt/PCP signaling during zebrafish gastrulation. First, we assessed the location of the centrosome/microtubule organizing center (MTOC) relative to the cell nucleus and the body axes, as a marker of cell polarity. The intracellular position of MTOCs was polarized, perpendicular to the plane of the germ layers, independently of Wnt/PCP signaling. In addition, this position became biased posteriorly and medially within the plane of the germ layers at the transition from mid- to late gastrulation and from slow to fast C&E movements. This depends on intact Wnt/PCP signaling through Knypek (Glypican4/6) and Dishevelled components. Second, we tested whether microtubules are required for planar cell polarization. Once the planar cell polarity is established, microtubules are not required for accumulation of Prickle at the anterior cell edge. However, microtubules are needed for cell-cell contacts and initiation of its anterior localization. Reciprocal interactions occur between Wnt/PCP signaling and microtubule cytoskeleton during C&E gastrulation movements. Wnt/PCP signaling influences the polarity of the microtubule cytoskeleton and, conversely, microtubules are required for the asymmetric distribution of Wnt/PCP pathway components.
机译:在脊椎动物的胃形成过程中,会聚和扩展细胞的运动与前后胚轴和后胚轴协调。 Wnt平面细胞极性(Wnt / PCP)信号使细胞相对于前后胚轴的运动行为极化。要了解Wnt / PCP信号传导如何介导会聚和延伸(C&E)运动,需要分析用于改变细胞形态和行为的胚胎极性机制。在这里,我们检查了斑马鱼胃泌尿过程中微管细胞骨架和Wnt / PCP信号之间的相互作用。首先,我们评估了中心体/微管组织中心(MTOC)相对于细胞核和体轴的位置,作为细胞极性的标志。独立于Wnt / PCP信号传导,MTOC的细胞内位置被极化,垂直于胚层的平面。另外,在从中到晚期气化和从慢到快的C&E运动过渡的过程中,该位置在胚层的平面内向后和向内偏移。这取决于通过Knypek(Glypican4 / 6)和Disheveled组件的完整Wnt / PCP信令。其次,我们测试了平面细胞极化是否需要微管。一旦建立了平面细胞极性,就不需要微管在细胞前缘积聚皮刺。然而,细胞与细胞之间的接触以及其前部定位的开始需要微管。在C&E胃泌尿运动过程中,Wnt / PCP信号传导与微管细胞骨架之间发生相互作用。 Wnt / PCP信号传导影响微管细胞骨架的极性,相反,Wnt / PCP途径组分的不对称分布需要微管。

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