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RasGRF1 mediates brain-derived neurotrophic factor-induced axonal growth in primary cultured cortical neurons

机译:RasGRF1介导原代培养的皮层神经元中脑源性神经营养因子诱导的轴突生长。

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摘要

The appropriate development and regulation of neuronal morphology are important to establish functional neuronal circuits and enable higher brain function of the central nervous system. R-Ras, a member of the Ras family of small GTPases, plays crucial roles in the regulation of axonal morphology, including outgrowth, branching, and guidance. GTP-bound activated R-Ras reorganizes actin filaments and microtubules through interactions with its downstream effectors, leading to the precise control of axonal morphology. However, little is known about the upstream regulatory mechanisms for R-Ras activation in neurons. In this study, we found that brain-derived neurotrophic factor (BDNF) has a positive effect on endogenous R-Ras activation and promotes R-Ras-mediated axonal growth. RNA interference knockdown and overexpression experiments revealed that RasGRF1, a guanine nucleotide exchange factor (GEF) for R-Ras, is involved in BDNF-induced R-Ras activation and the promotion of axonal growth. Phosphorylation of RasGRF1 by protein kinase A at Ser916/898 is needed for the full activation of its GEF activity and to facilitate Ras signaling. We observed that BDNF treatment markedly increased this phosphorylation. Our results suggest that BDNF is one of the critical extrinsic regulators for R-Ras activation, and that RasGRF1 is an intrinsic key mediator for BDNF-induced R-Ras activation and R-Ras-mediated axonal morphological regulation.
机译:适当发展和调节神经元形态对建立功能性神经元回路和使中枢神经系统具有更高的大脑功能至关重要。 R-Ras是小型GTPases的Ras家族的成员,在调节轴突形态(包括生长,分支和引导)中起着至关重要的作用。 GTP结合的活化R-Ras通过与其下游效应子的相互作用重组肌动蛋白丝和微管,从而精确控制轴突形态。然而,对于神经元中R-Ras激活的上游调节机制知之甚少。在这项研究中,我们发现脑源性神经营养因子(BDNF)对内源性R-Ras激活具有积极作用,并促进R-Ras介导的轴突生长。 RNA干扰敲低和过表达实验表明RasGRF1,R-Ras的鸟嘌呤核苷酸交换因子(GEF),参与BDNF诱导的R-Ras活化和轴突生长的促进。需要蛋白激酶A在Ser916 / 898上对RasGRF1进行磷酸化,才能完全激活其GEF活性并促进Ras信号传导。我们观察到,BDNF处理显着增加了这种磷酸化。我们的研究结果表明BDNF是R-Ras激活的关键外在调节剂之一,并且RasGRF1是BDNF诱导的R-Ras激活和R-Ras介导的轴突形态调节的内在关键介体。

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