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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Pard3 Regulates Contact Between Neural Crest Cells and the Timing of Schwann Cell Differentiation but is not Essential for Neural Crest Migration or Myelination
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Pard3 Regulates Contact Between Neural Crest Cells and the Timing of Schwann Cell Differentiation but is not Essential for Neural Crest Migration or Myelination

机译:Pard3调节神经C细胞之间的接触和雪旺氏细胞分化的时间,但不是神经rest迁移或髓鞘形成所必需的。

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摘要

Background: Schwann cells, which arise from the neural crest, are the myelinating glia of the peripheral nervous system. During development neural crest and their Schwann cell derivatives engage in a sequence of events that comprise delamination from the neuroepithelium, directed migration, axon ensheathment, and myelin membrane synthesis. At each step neural crest and Schwann cells are polarized, suggesting important roles for molecules that create cellular asymmetries. In this work we investigated the possibility that one polarity protein, Pard3, contributes to the polarized features of neural crest and Schwann cells that are associated with directed migration and myelination. Results: We analyzed mutant zebrafish embryos deficient for maternal and zygotic pard3 function. Time-lapse imaging revealed that neural crest delamination was normal but that migrating cells were disorganized with substantial amounts of overlapping membrane. Nevertheless, neural crest cells migrated to appropriate peripheral targets. Schwann cells wrapped motor axons and, although myelin gene expression was delayed, myelination proceeded to completion. Conclusions: Pard3 mediates contact inhibition between neural crest cells and promotes timely myelin gene expression but is not essential for neural crest migration or myelination. Developmental Dynamics 243:1511-1523, 2014. (c) 2014 Wiley Periodicals, Inc.
机译:背景:雪旺细胞起源于神经c,是周围神经系统的髓质胶质细胞。在发育过程中,神经c及其雪旺细胞衍生物参与一系列事件,包括从神经上皮层剥离,定向迁移,轴突鞘和髓鞘膜合成。在每一步中,神经rest和雪旺细胞都被极化,这提示了产生细胞不对称性的分子的重要作用。在这项工作中,我们研究了一种极性蛋白Pard3促进神经c和雪旺氏细胞极化特征(与定向迁移和髓鞘化有关)的可能性。结果:我们分析了缺乏母体和合子pard3功能的突变斑马鱼胚胎。延时成像显示神经c分层正常,但迁移细胞杂乱无章,有大量的重叠膜。然而,神经rest细胞迁移到适当的外周靶标。雪旺氏细胞包裹了运动轴突,尽管髓磷脂基因的表达被延迟,但髓鞘化已经完成。结论:Pard3介导神经rest细胞之间的接触抑制并促进及时的髓磷脂基因表达,但对于神经rest迁移或髓鞘形成不是必需的。 Developmental Dynamics 243:1511-1523,2014.(c)2014 Wiley Periodicals,Inc.

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