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突变型 TDP-43 在运动神经元中促进大鼠 ALS 的发病和进展。

Mutant TDP-43 in motor neurons promotes the onset and progression of ALS in rats.

机构信息

Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

J Clin Invest. 2012 Jan;122(1):107-18. doi: 10.1172/JCI59130. Epub 2011 Dec 12.

Abstract

Amyotrophic lateral sclerosis (ALS) is characterized by progressive motor neuron degeneration, which ultimately leads to paralysis and death. Mutation of TAR DNA binding protein 43 (TDP-43) has been linked to the development of an inherited form of ALS. Existing TDP-43 transgenic animals develop a limited loss of motor neurons and therefore do not faithfully reproduce the core phenotype of ALS. Here, we report the creation of multiple lines of transgenic rats in which expression of ALS-associated mutant human TDP-43 is restricted to either motor neurons or other types of neurons and skeletal muscle and can be switched on and off. All of these rats developed progressive paralysis reminiscent of ALS when the transgene was switched on. Rats expressing mutant TDP-43 in motor neurons alone lost more spinal motor neurons than rats expressing the disease gene in varying neurons and muscle cells, although these rats all developed remarkable denervation atrophy of skeletal muscles. Intriguingly, progression of the disease was halted after transgene expression was switched off; in rats with limited loss of motor neurons, we observed a dramatic recovery of motor function, but in rats with profound loss of motor neurons, we only observed a moderate recovery of motor function. Our finding suggests that mutant TDP-43 in motor neurons is sufficient to promote the onset and progression of ALS and that motor neuron degeneration is partially reversible, at least in mutant TDP-43 transgenic rats.

摘要

肌萎缩侧索硬化症(ALS)的特征是运动神经元进行性退化,最终导致瘫痪和死亡。TAR DNA 结合蛋白 43(TDP-43)的突变与遗传性 ALS 的发生有关。现有的 TDP-43 转基因动物仅发展出有限的运动神经元丧失,因此不能真实再现 ALS 的核心表型。在这里,我们报告了多种转基因大鼠系的创建,其中 ALS 相关突变型人 TDP-43 的表达仅限于运动神经元或其他类型的神经元和骨骼肌,并且可以开启和关闭。当转基因开启时,所有这些大鼠均表现出进行性瘫痪,类似于 ALS。仅在运动神经元中表达突变 TDP-43 的大鼠比在不同神经元和肌肉细胞中表达疾病基因的大鼠失去更多的脊髓运动神经元,尽管这些大鼠均表现出骨骼肌明显的去神经萎缩。有趣的是,在关闭转基因表达后,疾病的进展停止了;在运动神经元丧失有限的大鼠中,我们观察到运动功能的显著恢复,但在运动神经元丧失严重的大鼠中,我们仅观察到运动功能的中度恢复。我们的发现表明,运动神经元中的突变 TDP-43 足以促进 ALS 的发生和进展,并且运动神经元退化至少在突变 TDP-43 转基因大鼠中部分是可逆的。

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