Institute of Clinical Neurobiology, University of Wuerzburg, 97078, Wuerzburg, Germany.
Comprehensive Cancer Center Mainfranken, University of Wuerzburg, 97080, Wuerzburg, Germany.
Acta Neuropathol Commun. 2020 Jul 24;8(1):116. doi: 10.1186/s40478-020-00987-6.
Protein inclusions containing the RNA-binding protein TDP-43 are a pathological hallmark of amyotrophic lateral sclerosis and other neurodegenerative disorders. The loss of TDP-43 function that is associated with these inclusions affects post-transcriptional processing of RNAs in multiple ways including pre-mRNA splicing, nucleocytoplasmic transport, modulation of mRNA stability and translation. In contrast, less is known about the role of TDP-43 in axonal RNA metabolism in motoneurons. Here we show that depletion of Tdp-43 in primary motoneurons affects axon growth. This defect is accompanied by subcellular transcriptome alterations in the axonal and somatodendritic compartment. The axonal localization of transcripts encoding components of the cytoskeleton, the translational machinery and transcripts involved in mitochondrial energy metabolism were particularly affected by loss of Tdp-43. Accordingly, we observed reduced protein synthesis and disturbed mitochondrial functions in axons of Tdp-43-depleted motoneurons. Treatment with nicotinamide rescued the axon growth defect associated with loss of Tdp-43. These results show that Tdp-43 depletion in motoneurons affects several pathways integral to axon health indicating that loss of TDP-43 function could thus make a major contribution to axonal pathomechanisms in ALS.
包含 RNA 结合蛋白 TDP-43 的蛋白包涵体是肌萎缩侧索硬化症和其他神经退行性疾病的病理学标志。与这些包涵体相关的 TDP-43 功能丧失会以多种方式影响 RNA 的转录后加工,包括前体 mRNA 剪接、核质转运、mRNA 稳定性和翻译的调节。相比之下,关于 TDP-43 在运动神经元轴突 RNA 代谢中的作用知之甚少。在这里,我们表明原代运动神经元中 Tdp-43 的耗竭会影响轴突生长。这一缺陷伴随着轴突和体树突区室中转录组的亚细胞改变。编码细胞骨架成分、翻译机制和参与线粒体能量代谢的转录本的转录本在 Tdp-43 缺失时特别受到影响。因此,我们观察到 Tdp-43 耗竭的运动神经元中的蛋白质合成减少和线粒体功能紊乱。烟酰胺治疗可挽救与 Tdp-43 缺失相关的轴突生长缺陷。这些结果表明,运动神经元中 Tdp-43 的耗竭会影响轴突健康的几个重要途径,这表明 TDP-43 功能的丧失可能会对 ALS 中的轴突病理机制做出重大贡献。