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Apical Accumulation of Rho in the Neural Plate Is Important for Neural Plate Cell Shape Change and Neural Tube Formation

机译:Rho在神经板中的累积对神经板细胞形状变化和神经管形成很重要

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摘要

Although Rho-GTPases are well-known regulators of cytoskeletal reorganization, their in vivo distribution and physiological functions have remained elusive. In this study, we found marked apical accumulation of Rho in developing chick embryos undergoing folding of the neural plate during neural tube formation, with similar accumulation of activated myosin II. The timing of accumulation and biochemical activation of both Rho and myosin II was coincident with the dynamics of neural tube formation. Inhibition of Rho disrupted its apical accumulation and led to defects in neural tube formation, with abnormal morphology of the neural plate. Continuous activation of Rho also altered neural tube formation. These results indicate that correct spatiotemporal regulation of Rho is essential for neural tube morphogenesis. Furthermore, we found that a key morphogenetic signaling pathway, the Wnt/PCP pathway, was implicated in the apical accumulation of Rho and regulation of cell shape in the neural plate, suggesting that this signal may be the spatiotemporal regulator of Rho in neural tube formation.
机译:尽管Rho-GTP酶是细胞骨架重组的众所周知的调节剂,但是它们的体内分布和生理功能仍然难以捉摸。在这项研究中,我们发现发育中的鸡胚在神经管形成过程中经历神经板折叠时,Rho的根尖明显积聚,与活化的肌球蛋白II积聚相似。 Rho和肌球蛋白II的积累和生化激活的时机与神经管形成的动力学一致。 Rho的抑制破坏了其顶端积累,并导致神经管形态异常的神经管形成缺陷。 Rho的持续激活也改变了神经管的形成。这些结果表明,Rho的正确时空调节对于神经管形态发生至关重要。此外,我们发现一个关键的形态发生信号通路,Wnt / PCP通路,与Rho的顶端积累和神经板中细胞形状的调节有关,表明该信号可能是神经管形成过程中Rho的时空调节因子。 。

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