首页> 美国卫生研究院文献>The Journal of Neuroscience >Trk Activation of the ERK1/2 Kinase Pathway Stimulates Intermediate Chain Phosphorylation and Recruits Cytoplasmic Dynein to Signaling Endosomes for Retrograde Axonal Transport
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Trk Activation of the ERK1/2 Kinase Pathway Stimulates Intermediate Chain Phosphorylation and Recruits Cytoplasmic Dynein to Signaling Endosomes for Retrograde Axonal Transport

机译:Erk1 / 2激酶途径的Trk激活刺激中间链磷酸化和招募细胞质动力蛋白向信号内体逆行轴突运输。

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摘要

The retrograde transport of Trk-containing endosomes from the axon to the cell body by cytoplasmic dynein is necessary for axonal and neuronal survival. We investigated the recruitment of dynein to signaling endosomes in rat embryonic neurons and PC12 cells. We identified a novel phosphoserine on the dynein intermediate chains (ICs), and we observed a time-dependent neurotrophin-stimulated increase in intermediate chain phosphorylation on this site in both cell types. Pharmacological studies, overexpression of constitutively active MAP kinase kinase, and an in vitro assay with recombinant proteins demonstrated that the intermediate chains are phosphorylated by the MAP kinase ERK1/2, extracellular signal-regulated kinase, a major downstream effector of Trk. Live cell imaging with fluorescently tagged IC mutants demonstrated that the dephosphomimic mutants had significantly reduced colocalization with Trk and Rab7, but not a mitochondrial marker. The phosphorylated intermediate chains were enriched on immunoaffinity-purified Trk-containing organelles. Inhibition of ERK reduced the amount of phospho-IC and the total amount of dynein that copurified with the signaling endosomes. In addition, inhibition of ERK1/2 reduced the motility of Rab7- and TrkB-containing endosomes and the extent of their colocalization with dynein in axons. NGF-dependent survival of sympathetic neurons was significantly reduced by the overexpression of the dephosphomimic mutant IC-1B-S80A, but not WT IC-1B, further demonstrating the functional significance of phosphorylation on this site. These results demonstrate that neurotrophin binding to Trk initiates the recruitment of cytoplasmic dynein to signaling endosomes through ERK1/2 phosphorylation of intermediate chains for their subsequent retrograde transport in axons.
机译:含Trk的内体通过细胞质的动力蛋白从轴突逆行转运至细胞体对于轴突和神经元存活是必需的。我们调查了动力蛋白在大鼠胚胎神经元和PC12细胞中的信号内体的募集。我们在动力蛋白中间链(ICs)上发现了一种新型的磷酸丝氨酸,并且在两种细胞类型的该位点上,我们观察到了时间依赖性神经营养蛋白刺激的中间链磷酸化增加。药理研究,组成型活性MAP激酶激酶的过表达以及重组蛋白的体外测定表明,中间链被MAP激酶ERK1 / 2(细胞外信号调节激酶,Trk的主要下游效应物)磷酸化。带有荧光标记的IC突变体的活细胞成像表明,脱磷突变体与Trk和Rab7的共定位显着降低,但与线粒体标记无关。磷酸化的中间链富含免疫亲和纯化的含Trk的细胞器。抑制ERK可减少与信号内体共纯化的磷酸-IC量和动力蛋白的总量。此外,ERK1 / 2的抑制作用可降低含有Rab7和TrkB的内体的运动性以及轴突中与动力蛋白共定位的程度。脱磷酸突变体IC-1B-S80A的过表达显着降低了交感神经元的NGF依赖性存活,但WT IC-1B却没有,这进一步证明了该部位磷酸化的功能意义。这些结果表明,神经营养蛋白与Trk的结合通过中间链的ERK1 / 2磷酸化,启动了细胞质动力蛋白的募集,以传递信号给内体,从而在轴突中逆行转运。

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