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Dynamic morphogenesis of a pioneer axon in Drosophila and its regulation by Abl tyrosine kinase

机译:果蝇中Pioneer Axon的动态形态发生及其Abl酪氨酸激酶调节

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The fundamental problem in axon growth and guidance is to understand how cytoplasmic signaling modulates the cytoskeleton to produce directed growth cone motility. We here dissect this process using live imaging of the TSM1 axon of the developing Drosophila wing. We find that the growth cone is almost purely filopodial, and that it extends by a protrusive mode of growth. Quantitative analysis reveals two separate groups of growth cone properties that together account for growth cone structure and dynamics. The core morphological features of the growth cone are strongly correlated with one another and define two discrete morphs. Genetic manipulation of a critical mediator of axon guidance signaling, Abelson (Abl) tyrosine kinase, shows that while Abl weakly modulates the ratio of the two morphs it does not greatly change their properties. Rather, Abl primarily regulates the second group of properties, which report the organization and distribution of actin in the growth cone and are coupled to growth cone velocity. Other experiments dissect the nature of that regulation of actin organization and how it controls the spatial localization of filopodial dynamics and thus axon extension. Together, these observations suggest a novel, probabilistic mechanism by which Abl biases the stochastic fluctuations of growth cone actin to direct axon growth and guidance.
机译:轴突生长和指导中的根本问题是了解细胞质信号如何调节细胞骨架以产生定向的生长锥动力。我们在这里解剖了使用发展果蝇翼的TSM1 Axon的实时成像来解剖该过程。我们发现增长锥几乎是纯粹的剥离的,并且它延伸到突出的生长方式。定量分析揭示了两组单独的生长锥性能,其一起占生长锥结构和动力学。生长锥的核心形态学特征彼此强烈地相关,并定义了两个离散的变形。轴突引导信号传导的临界介体的遗传操作,Abelson(ABL)酪氨酸激酶,虽然Abl弱调节了两种变形的比例,但它不会大大改变它们的性质。相反,ABL主要调节第二组性质,其报告了在生长锥中的肌动蛋白的组织和分布,并与生长锥速度相连。其他实验将该调控的性质描述了肌动蛋白组织的调节以及它如何控制磁性发育动力学的空间定位以及轴突延伸。这些观察结果共同提出了一种新颖的概率机制,通过该机制,ABL偏压生长锥肌动蛋白的随机波动直接轴突生长和引导。

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