National Brain Research Center, Manesar, Haryana 122 050, India.
J Neurosci. 2010 Feb 17;30(7):2755-66. doi: 10.1523/JNEUROSCI.4218-09.2010.
Successful axon targeting during development is critically dependent on directionality of axon extension and requires coordination between the extrinsic cues that provide spatial information to the axon and the intrinsic responses that regulate structural specification of the axon during neuronal polarization. How these responses are coordinated is unclear but are known to involve aligning the centrosome with the base of the emerging axon. We have used a novel in vitro micropatterning assay that spatially segregates the extrinsic cues used by polarizing cerebellar granule cells to orient axon extension and used it to investigate the signaling mechanisms responsible for coordinating centrosome positioning with intrinsic responses. The results show that, when laminin and/or vitronectin are used as spatially restricted cues in association with substrate-associated sonic hedgehog, they are sufficient to induce cell cycle arrest, that laminin and vitronectin then induce integrin-mediated signaling that upregulates phosphoinositide-3 kinase and PKC function to produce phosphatidylinositol 3,4,5-trisphosphate (PIP3) that is associated with the centrosome, that this PIP3 can interact with PKC-phosphorylated growth-associated protein GAP-43, and that PKC-phosphorylated GAP-43 in turn is required for positioning Par6, Cdc42, and IQGAP1, all intrinsic response components, in proximity to the centrosome, such that, in the absence of GAP-43, they are mislocalized and microtubules are not oriented appropriately. We conclude from these results that GAP-43 plays an important role in coordinating extrinsic signaling and intrinsic responses in polarizing cerebellar granule neurons.
在发育过程中,轴突的成功靶向取决于轴突延伸的方向性,并且需要协调提供空间信息的外在线索和调节神经元极化过程中轴突结构特化的内在反应。这些反应如何协调尚不清楚,但已知涉及将中心体与新兴轴突的基部对齐。我们使用了一种新颖的体外微图案化测定法,该方法可空间分离用于定向小脑颗粒细胞轴突延伸的极化外在线索,并将其用于研究负责协调中心体定位与内在反应的信号转导机制。结果表明,当层粘连蛋白和/或 vitronectin 用作与基底相关的 sonic hedgehog 相关的空间限制线索时,它们足以诱导细胞周期停滞,然后层粘连蛋白和 vitronectin 诱导整合素介导的信号转导,上调磷酸肌醇 3-激酶和蛋白激酶 C 的功能,以产生与中心体相关的磷脂酰肌醇 3,4,5-三磷酸(PIP3),该 PIP3 可以与 PKC 磷酸化生长相关蛋白 GAP-43 相互作用,而 PKC 磷酸化的 GAP-43 反过来又需要将内在反应成分 Par6、Cdc42 和 IQGAP1 定位在接近中心体的位置,使得在没有 GAP-43 的情况下,它们发生定位错误,微管也不能正确定向。我们从这些结果得出结论,GAP-43 在协调极化小脑颗粒神经元的外在信号和内在反应中发挥重要作用。