首页> 美国卫生研究院文献>The Journal of Neuroscience >Peripheral Nerve Regeneration and NGF-Dependent Neurite Outgrowth of Adult Sensory Neurons Converge on STAT3 Phosphorylation Downstream of Neuropoietic Cytokine Receptor gp130
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Peripheral Nerve Regeneration and NGF-Dependent Neurite Outgrowth of Adult Sensory Neurons Converge on STAT3 Phosphorylation Downstream of Neuropoietic Cytokine Receptor gp130

机译:成人感觉神经元的周围神经再生和依赖NGF的神经突产物收敛于神经生成细胞因子受体gp130下游的STAT3磷酸化。

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摘要

After nerve injury, adult sensory neurons can regenerate peripheral axons and reconnect with their target tissue. Initiation of outgrowth, as well as elongation of neurites over long distances, depends on the signaling of receptors for neurotrophic growth factors. Here, we investigated the importance of gp130, the signaling subunit of neuropoietic cytokine receptors in peripheral nerve regeneration.After sciatic nerve crush, functional recovery in vivo was retarded in SNS-gp130−/− mice, which specifically lack gp130 in sensory neurons. Correspondingly, a significantly reduced number of free nerve endings was detected in glabrous skin from SNS-gp130−/− compared with control mice after nerve crush. Neurite outgrowth and STAT3 activation in vitro were severely reduced in cultures in gp130-deficient cultured neurons. Surprisingly, in neurons obtained from SNS-gp130−/− mice the increase in neurite length was reduced not only in response to neuropoietic cytokine ligands of gp130 but also to nerve growth factor (NGF), which does not bind to gp130-containing receptors. Neurite outgrowth in the absence of neurotrophic factors was partially rescued in gp130-deficient neurons by leptin, which activates STAT3 downstream of leptic receptor and independent of gp130. The neurite outgrowth response of gp130-deficient neurons to NGF was fully restored in the presence of leptin.Based on these findings, gp130 signaling via STAT3 activation is suggested not only to be an important regulator of peripheral nerve regeneration in vitro and in vivo, but as determining factor for the growth promoting action of NGF in adult sensory neurons.
机译:神经损伤后,成人的感觉神经元可以再生周围轴突并与其靶组织重新连接。向外生长以及神经突长距离延伸取决于神经营养生长因子受体的信号传导。在这里,我们研究了神经生成细胞因子受体的信号亚基gp130在周围神经再生中的重要性。坐骨神经挤压后,SNS-gp130 -// 小鼠体内的功能恢复受阻。感觉神经元缺乏gp130。相应地,与压迫后的对照小鼠相比,在SNS-gp130 -/-的无毛皮肤中检测到的游离神经末梢的数量明显减少。在缺乏gp130的培养神经元中,培养物中神经突生长和STAT3的活化作用大大降低。令人惊讶的是,在从SNS-gp130 -/-小鼠获得的神经元中,神经突长度的增加不仅减少了对gp130的神经生成细胞因子配体的响应,而且减少了对神经生长因子(NGF)的响应与含gp130的受体结合。瘦素可在gp130缺陷神经元中部分挽救缺乏神经营养因子的神经突生长,瘦素可激活STAT3下游的无菌受体并独立于gp130。在瘦素存在的情况下,gp130缺陷神经元对神经生长素的神经突生长反应得以完全恢复。基于这些发现,gp130信号通过STAT3激活不仅在体内外均是周围神经再生的重要调节剂,而且作为NGF在成人感觉神经元中促进生长的决定因素。

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