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Nerve Growth Factor-mediated Neurite Outgrowth via Regulation of Rab5

机译:神经生长因子介导的Rab5调控介导的神经突生长。

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Nerve growth factor (NGF) induces neurite outgrowth and differentiation in a process that involves NGF binding to its receptor TrkA and endocytosis of the NGF–TrkA complex into signaling endosomes. Here, we find that biogenesis of signaling endosomes requires inactivation of Rab5 to block early endosome fusion. Expression of dominant-negative Rab5 mutants enhanced NGF-mediated neurite outgrowth, whereas a constitutively active Rab5 mutant or Rabex-5 inhibited this process. Consistently, inactivation of Rab5 sustained TrkA activation on the endosomes. Furthermore, NGF treatment rapidly decreased cellular level of active Rab5-GTP, as shown by pull-down assays. This Rab5 down-regulation was mediated by RabGAP5, which was shown to associate with TrkA by coimmunoprecipitation assays. Importantly, RNA interference of RabGAP5 as well as a RabGAP5 truncation mutant containing the TrkA-binding domain blocked NGF-mediated neurite outgrowth, indicating a requirement for RabGAP5 in this process. Thus, NGF signaling down-regulates Rab5 activity via RabGAP5 to facilitate neurite outgrowth and differentiation.
机译:神经生长因子(NGF)在一个过程中诱导神经突生长和分化,该过程涉及NGF与其受体TrkA结合以及NGF-TrkA复合物的内吞作用,从而成为信号内体。在这里,我们发现信号传递内体的生物发生需要灭活Rab5来阻止早期的内体融合。显性负性Rab5突变体的表达增强了NGF介导的神经突生长,而组成型活性Rab5突变体或Rabex-5抑制了这一过程。一致地,Rab5的失活持续在内体上激活TrkA。此外,如下拉测定所示,NGF处理迅速降低了活性Rab5-GTP的细胞水平。 Rab5的下调是由RabGAP5介导的,通过共免疫沉淀测定法显示它与TrkA相关。重要的是,RabGAP5的RNA干扰以及包含TrkA结合域的RabGAP5截短突变体阻断了NGF介导的神经突生长,表明在此过程中需要RabGAP5。因此,NGF信号通过RabGAP5下调Rab5活性,以促进神经突向外生长和分化。

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