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

与肌萎缩侧索硬化症 (ALS) 相关的蛋白质 TDP-43 维持着 STMN2 的水平,STMN2 是运动神经元生长和修复的介质。

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作者:Joseph R Klim ,Luis A Williams ,Francesco Limone ,Irune Guerra San Juan ,Brandi N Davis-Dusenbery ,Daniel A Mordes ,Aaron Burberry ,Michael J Steinbaugh,Kanchana K Gamage ,Rory Kirchner,Rob Moccia ,Seth H Cassel   ,Kuchuan Chen,Brian J Wainger,Clifford J Woolf,Kevin Eggan        0

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.

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