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Cellular model of neuronal atrophy induced by DYNC1I1 deficiency reveals protective roles of RAS-RAF-MEK signaling

机译:DYNC1I1缺乏引起的神经元萎缩的细胞模型揭示了RAS-RAF-MEK信号的保护作用

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Neuronal atrophy is a common pathological feature occurred in aging and neurodegenerative diseases. A variety of abnormalities including motor protein malfunction and mitochondrial dysfunction contribute to the loss of neuronal architecture; however, less is known about the intracellular signaling pathways that can protect against or delay this pathogenic process. Here, we show that the DYNC1I1 deficiency, a neuron-specific dynein intermediate chain, causes neuronal atrophy in primary hippocampal neurons. With this cellular model, we are able to find that activation of RAS-RAF-MEK signaling protects against neuronal atrophy induced by DYNC1I1 deficiency, which relies on MEK-dependent autophagy in neuron. Moreover, we further reveal that BRAF also protects against neuronal atrophy induced by mitochondrial impairment. These findings demonstrate protective roles of the RAS-RAF-MEK axis against neuronal atrophy, and imply a new therapeutic target for clinical intervention.
机译:神经元萎缩是发生在衰老和神经退行性疾病中的常见病理特征。包括运动蛋白功能异常和线粒体功能异常在内的多种异常导致神经元结构的丧失。然而,关于细胞内信号传导途径可以保护或延缓这种致病过程的了解还很少。在这里,我们显示DYNC1I1缺乏症(一种神经元特异性动力蛋白中间链)在原代海马神经元中引起神经元萎缩。有了这种细胞模型,我们能够发现RAS-RAF-MEK信号的激活可以保护DYNC1I1缺乏症(依赖于神经元中MEK依赖的自噬)诱导的神经元萎缩。此外,我们进一步揭示,BRAF还可以保护线粒体损伤所致的神经元萎缩。这些发现证明了RAS-RAF-MEK轴对神经元萎缩的保护作用,并暗示了临床干预的新治疗靶点。

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