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Zebrafish Prickle1b mediates facial branchiomotor neuron migration via a farnesylation-dependent nuclear activity

机译:斑马鱼Prickle1b通过依赖于法尼基化的核活性介导面部分支运动神经元迁移

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摘要

The facial branchiomotor neurons (FBMNs) undergo a characteristic tangential migration in the vertebrate hindbrain. We previously used a morpholino knockdown approach to reveal that zebrafish prickle1b (pk1b) is required for this migration. Here we report that FBMN migration is also blocked in a pk1b mutant with a disruption in the consensus farnesylation motif. We confirmed that this lipid modification is required during FBMN migration by disrupting the function of farnesyl biosynthetic enzymes. Furthermore, farnesylation of a tagged Pk1b is required for its nuclear localization. Using a unique rescue approach, we have demonstrated that Pk1b nuclear localization and farnesylation are required during FBMN migration. Our data suggest that Pk1b acts at least partially independently of core planar cell polarity molecules at the plasma membrane, and might instead be acting at the nucleus. We also found that the neuronal transcriptional silencer REST is necessary for FBMN migration, and we provide evidence that interaction between Pk1b and REST is required during this process. Finally, we demonstrate that REST protein, which is normally localized in the nuclei of migrating FBMNs, is depleted from the nuclei of Pk1b-deficient neurons. We conclude that farnesylation-dependent nuclear localization of Pk1b is required to regulate REST localization and thus FBMN migration.
机译:面部分支运动神经元(FBMN)在脊椎动物后脑中经历特征性切向迁移。我们以前使用了吗啉代敲低方法来揭示此迁移需要斑马鱼prickle1b(pk1b)。在这里,我们报告FBMN迁移在pk1b突变体中也被阻断,其共有的法尼基化基序被破坏。我们证实,通过破坏法呢基生物合成酶的功能,FBMN迁移过程中需要这种脂质修饰。此外,标记的Pk1b的法呢基化是其核定位所必需的。使用独特的营救方法,我们证明了FBMN迁移过程中需要Pk1b核定位和法尼基化。我们的数据表明,Pk1b至少部分独立于质膜上的核心平面细胞极性分子起作用,而可能替代地作用于细胞核。我们还发现,神经元转录沉默子REST是FBMN迁移所必需的,并且我们提供了证据,表明在此过程中需要Pk1b和REST之间的相互作用。最后,我们证明通常位于迁移的FBMNs的核中的REST蛋白已从Pk1b缺陷神经元的核中耗尽。我们得出结论,需要依赖于法尼基化的Pk1b核定位来调节REST定位和FBMN迁移。

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