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An NGF-TrkA-mediated retrograde signal to transcription factor CREB in sympathetic neurons

机译:NGF-TrkA介导的交感神经元转录因子CREB的逆行信号

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Nerve growth factor (NGF) is a neurotrophic factor secreted by cells that are the targets of innervation of sympathetic and some sensory neurons. However, the mechanism by which the NGF signal is propagated from the axon terminal to the cell body, which can be more than 1 meter away, to influence biochemical events critical for growth and survival of neurons has remained unclear. An NGF-mediated signal transmitted from the terminals and distal axons of cultured rat sympathetic neurons to their nuclei regulated phosphorylation of the transcription factor CREB (cyclic adenosine monophosphate response element-binding protein). Internalization of NGF and its receptor tyrosine kinase TrkA, and their transport to the cell body, were required for transmission of this signal. The tyrosine kinase activity of TrkA was required to maintain it in an autophosphorylated state upon its arrival in the cell body and for propagation of the signal to CREB within neuronal nuclei. Thus, an NGF-TrkA complex is a messenger that delivers the NGF signal from axon terminals to cell bodies of sympathetic neurons.
机译:神经生长因子(NGF)是细胞分泌的一种神经营养因子,是交感神经和一些感觉神经元神经支配的目标。但是,NGF信号从轴突末端传播到可能超过1米的细胞体,以影响对神经元生长和存活至关重要的生化事件的机制仍不清楚。 NGF介导的信号从培养的大鼠交感神经元的末端和远端轴突传递到它们的核调控转录因子CREB(环状腺苷单磷酸反应元件结合蛋白)的磷酸化。 NGF及其受体酪氨酸激酶TrkA的内在化及其向细胞体的转运是传递此信号所必需的。 TrkA的酪氨酸激酶活性需要使其在到达细胞体时保持自身磷酸化状态,并在神经元核内将信号传播至CREB。因此,NGF-TrkA复合物是使NGF信号从轴突末端传递到交感神经元细胞体的信使。

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