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GSK-3 Activity Is Critical for the Orientation of the Cortical Microtubules and the Dorsoventral Axis Determination in Zebrafish Embryos

机译:GSK-3活性对于斑马鱼胚胎中皮层微管的定向和腹背轴的确定至关重要

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摘要

The formation of dorsal-ventral (D–V) axis is the earliest event that breaks the radial symmetry and determines the bilateral body plan of a vertebrate embryo, however, the maternal control of this process is not fully understood. Here, we discovered a new dorsalizing window of acute lithium treatment, which covers only less than 10 minutes after fertilization. Lithium treatment in this window was not able to reverse the ventralized phenotype in tokkeabi (tkk) mutant embryos, and its dorsalizing activity on wild-type embryos was inhibited by nocodazole co-treatment. These evidences indicate that the underlying mechanism is independent of a direct activation of Wnt/β-catenin signaling, but depends on the upstream level of the microtubule mediated dorsal determinant transport. In order to identify the target of lithium in this newly discovered sensitive window, GSK-3 inhibitor IX as well as the IMPase inhibitor L690, 330 treatments were performed. We found that only GSK-3 inhibitor IX treatment mimicked the lithium treatment in the dorsalizing activity. Further study showed that the parallel pattern of cortical microtubules in the vegetal pole region and the directed migration of the Wnt8a mRNA were randomized by either lithium or GSK-3 inhibitor IX treatment. These results thus revealed an early and critical role of GSK-3 activity that regulates the orientation of the cortical microtubules and the directed transport of the dorsal determinants in zebrafish embryos.
机译:背腹(DV)轴的形成是最早的事件,它打破了径向对称性并决定了脊椎动物胚胎的双侧身体计划,但是,对这一过程的母体控制尚不完全清楚。在这里,我们发现了一种新的急性锂治疗背痛窗口,该窗口在受精后仅需不到10分钟的时间。在该窗口中进行锂处理无法逆转托卡比(tkk)突变体胚胎的腹侧表型,而诺考达唑共处理抑制了其对野生型胚胎的背侧化活性。这些证据表明,潜在的机制独立于Wnt /β-catenin信号的直接激活,但取决于微管介导的背决定簇转运的上游水平。为了在这个新发现的敏感窗口中识别锂的目标,进行了GSK-3抑制剂IX和IMPase抑制剂L690的处理。我们发现只有GSK-3抑制剂IX处理在背化活性方面模仿了锂处理。进一步的研究表明,通过锂或GSK-3抑制剂IX处理,植物极区中皮质微管的平行模式和Wnt8a mRNA的定向迁移是随机的。因此,这些结果揭示了GSK-3活性的早期和关键作用,该活性可调节斑马鱼胚胎中皮层微管的方向和背决定簇的定向转运。

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