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Wnt5a induces Ryk-dependent and -independent effects on callosal axon and dendrite growth

机译:Wnt5a诱导R骨轴突和树突生长依赖Ryk的和独立的影响。

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摘要

The non-canonical Wnt receptor, Ryk, promotes chemorepulsive axon guidance in the developing mouse brain and spinal cord in response to Wnt5a. Ryk has also been identified as a major suppressor of axonal regrowth after spinal cord injury. Thus, a comprehensive understanding of how growing axons and dendrites respond to Wnt5a-mediated Ryk activation is required if we are to overcome this detrimental activity. Here we undertook a detailed analysis of the effect of Wnt5a/Ryk interactions on axonal and dendritic growth in dissociated embryonic mouse cortical neuron cultures, focusing on callosal neurons known to be responsive to Ryk-induced chemorepulsion. We show that Ryk inhibits axonal growth in response to Wnt5a. We also show that Wnt5a inhibits dendrite growth independently of Ryk. However, this inhibition is relieved when Ryk is present. Therefore, Wnt5a-mediated Ryk activation triggers divergent responses in callosal axons and dendrites in the in vitro context.
机译:非经典Wnt受体Ryk响应Wnt5a促进发育中的小鼠大脑和脊髓中的化学脉冲轴突导向。 Ryk还被确定为脊髓损伤后轴突再生的主要抑制剂。因此,如果我们要克服这种有害的活性,就需要对生长中的轴突和树突如何对Wnt5a介导的Ryk激活作出反应的全面了解。在这里,我们进行了Wnt5a / Ryk相互作用对解离的胚胎小鼠皮质神经元培养物中轴突和树突状生长的影响的详细分析,重点研究了已知对Ryk诱导的化学搏动有反应的neuro神经元。我们表明Ryk抑制响应Wnt5a的轴突生长。我们还表明Wnt5a抑制树突生长独立于Ryk。但是,当存在Ryk时,这种抑制作用会减轻。因此,在体外环境中,Wnt5a介导的Ryk激活触发call轴突和树突中的不同反应。

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