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TDP-43 是肌萎缩性侧索硬化症(ALS)相关蛋白,可维持运动神经元生长和修复的介质 STMN2 的水平。

ALS-implicated protein TDP-43 sustains levels of STMN2, a mediator of motor neuron growth and repair.

机构信息

Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, MA, USA.

Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA, USA.

出版信息

Nat Neurosci. 2019 Feb;22(2):167-179. doi: 10.1038/s41593-018-0300-4. Epub 2019 Jan 14.

Abstract

The findings that amyotrophic lateral sclerosis (ALS) patients almost universally display pathological mislocalization of the RNA-binding protein TDP-43 and that mutations in its gene cause familial ALS have nominated altered RNA metabolism as a disease mechanism. However, the RNAs regulated by TDP-43 in motor neurons and their connection to neuropathy remain to be identified. Here we report transcripts whose abundances in human motor neurons are sensitive to TDP-43 depletion. Notably, expression of STMN2, which encodes a microtubule regulator, declined after TDP-43 knockdown and TDP-43 mislocalization as well as in patient-specific motor neurons and postmortem patient spinal cord. STMN2 loss upon reduced TDP-43 function was due to altered splicing, which is functionally important, as we show STMN2 is necessary for normal axonal outgrowth and regeneration. Notably, post-translational stabilization of STMN2 rescued neurite outgrowth and axon regeneration deficits induced by TDP-43 depletion. We propose that restoring STMN2 expression warrants examination as a therapeutic strategy for ALS.

摘要

研究发现,肌萎缩侧索硬化症(ALS)患者几乎普遍存在 RNA 结合蛋白 TDP-43 的病理性定位错误,其基因突变导致家族性 ALS,这表明改变 RNA 代谢是一种疾病机制。然而,TDP-43 在运动神经元中调节的 RNA 及其与神经病变的联系仍有待确定。在这里,我们报告了人类运动神经元中丰度对 TDP-43 耗竭敏感的转录本。值得注意的是,编码微管调节剂的 STMN2 的表达在 TDP-43 敲低和 TDP-43 定位错误后以及在患者特异性运动神经元和尸检患者脊髓中下降。TDP-43 功能降低导致 STMN2 剪接改变,这在功能上很重要,因为我们表明 STMN2 对于正常的轴突生长和再生是必需的。值得注意的是,STMN2 的翻译后稳定挽救了 TDP-43 耗竭诱导的神经突生长和轴突再生缺陷。我们提出,恢复 STMN2 的表达值得作为 ALS 的治疗策略进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eae4/7153761/5c4bb45f8251/nihms-1512656-f0001.jpg

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