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Neurotrophin-mediated dendrite-to-nucleus signaling revealed by microfluidic compartmentalization of dendrites

机译:神经营养蛋白介导的树突到核的信号通过树突的微流体区室化揭示。

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摘要

Signaling from dendritic synapses to the nucleus regulates important aspects of neuronal function, including synaptic plasticity. The neurotrophin brain-derived neurotrophic factor (BDNF) can induce long-lasting strengthening of synapses in vivo and this effect is dependent on transcription. However, the mechanism of signaling to the nucleus is not well understood. Here we describe a microfluidic culture device to investigate dendrite-to-nucleus signaling. Using these microfluidic devices, we demonstrate that BDNF can act directly on dendrites to elicit an anterograde signal that induces transcription of the immediate early genes, Arc and c-Fos. Induction of Arc is dependent on dendrite- and cell body-derived calcium, whereas induction of c-Fos is calcium-independent. In contrast to retrograde neurotrophin-mediated axon-to-nucleus signaling, which is MEK5-dependent, BDNF-mediated anterograde dendrite-to-nucleus signaling is dependent on MEK1/2. Intriguingly, the activity of TrkB, the BDNF receptor, is required in the cell body for the induction of Arc and c-Fos mediated by dendritically applied BDNF. These results are consistent with the involvement of a signaling endosome-like pathway that conveys BDNF signals from the dendrite to the nucleus.
机译:从树突触到细胞核的信号调节神经元功能的重要方面,包括突触可塑性。神经营养蛋白脑源性神经营养因子(BDNF)可以在体内诱导突触的持久增强,这种作用取决于转录。但是,对细胞核信号转导的机制尚不十分了解。在这里,我们描述了一种微流体培养设备,以调查树突到核信号。使用这些微流控设备,我们证明BDNF可以直接作用于树突上,以引起顺行信号,该信号诱导立即早期基因Arc和c-Fos的转录。电弧的诱导取决于枝晶和细胞体来源的钙,而c-Fos的诱导则与钙无关。与依赖MEK5的逆行神经营养蛋白介导的轴突至细胞核信号转导相反,BDNF介导的顺行树突至细胞核信号转导依赖于MEK1 / 2。有趣的是,BDrk受体TrkB的活性在细胞体中是必需的,以诱导由树状施用的BDNF介导的Arc和c-Fos。这些结果与信号传导的内体样途径的参与相一致,该途径将BDNF信号从树突传送到细胞核。

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