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Wnt5/平面细胞极性途径调控果蝇蘑菇体神经元的轴突发育。

The Wnt5/planar cell polarity pathway regulates axonal development of the Drosophila mushroom body neuron.

机构信息

Institute of Molecular and Cellular Biosciences, University of Tokyo, Bunkyo-ku, Tokyo 113-0032, Japan.

出版信息

J Neurosci. 2011 Mar 30;31(13):4944-54. doi: 10.1523/JNEUROSCI.0154-11.2011.

Abstract

Axonal development is a fundamental process for circuit formation in the nervous system and is dependent on many cellular events, including axon initiation, elongation, guidance, and branching. The molecular mechanisms underlying these events have been well studied, especially for axon guidance. In the presence of a guidance cue, the polarization of a growth cone precedes the turning response, which is one example of the diverse forms of cell polarity. Planar cell polarity (PCP) is another example of cell polarity. Although some PCP genes are required for axonal tract formation in vertebrates, it remains elusive whether these genes participate in a common PCP pathway concertedly. Here, we show that essential PCP signaling components, encoded by frizzled (fz), strabismus (stbm), flamingo (fmi), and dishevelled (dsh), are cooperatively required for axonal targeting and branching of the Drosophila mushroom body (MB) neurons. A detailed analysis of these mutants revealed that these components were required for the correct targeting and bifurcation of axons. In addition, we suggest that Wnt5 functions as a ligand in the PCP pathway in this process. Wnt5 mutants showed similar phenotypes to PCP mutants at the single-cell level and genetically interacted with PCP genes. Wnt5 was broadly expressed in the developing brain. We propose that Wnt5 and the PCP pathway concertedly regulate axonal development of the MB.

摘要

轴突发育是神经系统中形成回路的基本过程,依赖于许多细胞事件,包括轴突起始、伸长、导向和分支。这些事件的分子机制已经得到了很好的研究,特别是对于轴突导向。在存在导向线索的情况下,生长锥的极化先于转向反应,这是细胞极性的多种形式之一。平面细胞极性(PCP)是细胞极性的另一个例子。虽然一些 PCP 基因对于脊椎动物轴突束的形成是必需的,但这些基因是否协同参与共同的 PCP 途径仍然难以捉摸。在这里,我们表明,由卷曲(fz)、斜视(stbm)、火烈鸟(fmi)和蓬乱(dsh)编码的必需 PCP 信号成分协同作用于果蝇蘑菇体(MB)神经元的轴突靶向和分支。对这些突变体的详细分析表明,这些成分对于轴突的正确靶向和分叉是必需的。此外,我们提出 Wnt5 在这个过程中作为 PCP 途径中的配体发挥作用。Wnt5 突变体在单细胞水平上表现出与 PCP 突变体相似的表型,并与 PCP 基因发生遗传相互作用。Wnt5 在发育中的大脑中广泛表达。我们提出 Wnt5 和 PCP 途径协同调节 MB 的轴突发育。

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