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New role of IKK alpha/beta phosphorylated IkappaB alpha in axon outgrowth and axon initial segment development.

机译:IKK alpha / beta磷酸化IkappaB alpha在轴突生长和轴突初始节段发展中的新作用。

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摘要

Neuronal polarity development begins by the outgrowth of the axon and the formation of the axon initial segment which acts as a diffusion barrier and it is the place of action potential generation. The mechanisms controlling this development are largely unknown. We describe a role for IkappaB alpha, the NFkappaB inhibitor, in the initial stages of axon outgrowth and the development of the axon initial segment. In cultured hippocampal neurons, inhibition of IkappaB alpha phosphorylation by IkappaB kinases (IKKs) impedes axon outgrowth. Moreover, the absence of IkappaB alpha phosphorylation, in the next stages of axon development, impairs the localization of structural and functional proteins at the axon initial segment, such as ankyrin G and voltage gated sodium channels. These results demonstrate a new role for proteins of the NFkappaB pathway in the acquisition of neuronal polarity and its involvement in the development of the axon initial segment.
机译:神经元极性的发展始于轴突的生长和轴突初始节段的形成,轴突初始节段充当扩散屏障,并且是动作电位产生的地方。控制这种发展的机制在很大程度上是未知的。我们描述了轴突生长的初始阶段和轴突初始节段的发展中,IkappaB alpha,NFkappaB抑制剂的作用。在培养的海马神经元中,IkappaB激酶(IKKs)对IkappaBα磷酸化的抑制作用可阻止轴突的生长。此外,在轴突发育的下一阶段中,缺乏IkappaBα磷酸化会损害结构和功能蛋白在轴突起始节段的定位,例如锚蛋白G和电压门控钠通道。这些结果证明了NFkappaB途径的蛋白质在神经元极性的获取及其参与轴突初始节段的发展中的新作用。

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