Investigations of signaling pathways in axon growth and guidance.

S Klostermann, F Bonhoeffer
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Abstract

The retinotectal projection in chick is a well studied model system for axon guidance. The 'stripe assay' provides a unique tool for investigating underlying molecules and mechanisms of axon guidance by non-diffusible substrate bound molecules in vitro. By combining this assay with a modified 'Campenot chamber', we have now investigated the role of several second messenger systems in this type of axon guidance by confronting growing axons with various drugs that are known to influence intracellular signaling. We have shown that extracellular, and most probably intracellular Ca++ is not required for this type of axon guidance, which also rules out the need for Ca++-dependent adhesion molecules like cadherins. While at least calmodulin and protein kinase C seem to be involved in axon elongation, inhibiting their function did not alter the growth cones' choice. Inhibition of other kinases, G-proteins and signaling components also failed to influence this guidance. These results may indicate that parallel signaling pathways take part in the molecular mechanism of this type of axon guidance.

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轴突生长和引导信号通路的研究。
雏鸡视网膜顶突是一个被广泛研究的轴突导向模型系统。“条纹试验”提供了一种独特的工具,用于研究体外非扩散底物结合分子的潜在分子和轴突引导机制。通过将该试验与改进的“Campenot室”相结合,我们现在研究了几种第二信使系统在这种轴突引导类型中的作用,通过使用各种已知影响细胞内信号传导的药物来对抗生长的轴突。我们已经证明,这种类型的轴突引导不需要细胞外和细胞内的Ca++,这也排除了对Ca++依赖的粘附分子(如钙粘蛋白)的需要。尽管至少钙调素和蛋白激酶C似乎与轴突伸长有关,但抑制它们的功能并没有改变生长锥的选择。其他激酶、g蛋白和信号成分的抑制也未能影响这一指导。这些结果可能表明平行信号通路参与了这种轴突引导的分子机制。
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