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衰老相关的转录程序改变是人类C9orf72突变运动神经元活动受损的基础。

Aging-Dependent Altered Transcriptional Programs Underlie Activity Impairments in Human C9orf72-Mutant Motor Neurons.

作者信息

Sommer Daniel, Rajkumar Sandeep, Seidel Mira, Aly Amr, Ludolph Albert, Ho Ritchie, Boeckers Tobias M, Catanese Alberto

机构信息

Institute of Anatomy and Cell Biology, Ulm University School of Medicine, Ulm, Germany.

Department of Neurology, Ulm University School of Medicine, Ulm, Germany.

出版信息

Front Mol Neurosci. 2022 Jun 14;15:894230. doi: 10.3389/fnmol.2022.894230. eCollection 2022.

Abstract

Amyotrophic Lateral Sclerosis (ALS) is an incurable neurodegenerative disease characterized by dysfunction and loss of upper and lower motor neurons (MN). Despite several studies identifying drastic alterations affecting synaptic composition and functionality in different experimental models, the specific contribution of impaired activity to the neurodegenerative processes observed in ALS-related MN remains controversial. In particular, contrasting lines of evidence have shown both hyper- as well as hypoexcitability as driving pathomechanisms characterizing this specific neuronal population. In this study, we combined high definition multielectrode array (HD-MEA) techniques with transcriptomic analysis to longitudinally monitor and untangle the activity-dependent alterations arising in human C9orf72-mutant MN. We found a time-dependent reduction of neuronal activity in ALS cultures occurring as synaptic contacts undergo maturation and matched by a significant loss of mutant MN upon aging. Notably, ALS-related neurons displayed reduced network synchronicity most pronounced at later stages of culture, suggesting synaptic imbalance. In concordance with the HD-MEA data, transcriptomic analysis revealed an early up-regulation of synaptic terms in ALS MN, whose expression was decreased in aged cultures. In addition, treatment of older mutant cells with Apamin, a K channel blocker previously shown to be neuroprotective in ALS, rescued the time-dependent loss of firing properties observed in ALS MN as well as the expression of maturity-related synaptic genes. All in all, this study broadens the understanding of how impaired synaptic activity contributes to MN degeneration in ALS by correlating electrophysiological alterations to aging-dependent transcriptional programs.

摘要

肌萎缩侧索硬化症(ALS)是一种无法治愈的神经退行性疾病,其特征是上下运动神经元(MN)功能障碍和丧失。尽管多项研究在不同实验模型中确定了影响突触组成和功能的剧烈变化,但在ALS相关运动神经元中观察到的活动受损对神经退行性过程的具体作用仍存在争议。特别是,相互矛盾的证据表明,过度兴奋和兴奋不足都是表征这一特定神经元群体的致病机制。在本研究中,我们将高清晰度多电极阵列(HD-MEA)技术与转录组分析相结合,以纵向监测和梳理人类C9orf72突变运动神经元中出现的活动依赖性变化。我们发现,在ALS培养物中,随着突触接触的成熟,神经元活动出现时间依赖性降低,并且在老化时突变运动神经元显著减少与之相匹配。值得注意的是,与ALS相关的神经元在培养后期表现出最明显的网络同步性降低,表明突触失衡。与HD-MEA数据一致,转录组分析显示ALS运动神经元中突触相关术语早期上调,其表达在老化培养物中降低。此外,用蜂毒明肽(一种先前已证明在ALS中具有神经保护作用的钾通道阻滞剂)处理老年突变细胞,挽救了在ALS运动神经元中观察到的放电特性的时间依赖性丧失以及成熟相关突触基因的表达。总而言之,本研究通过将电生理变化与衰老依赖性转录程序相关联,拓宽了对突触活动受损如何导致ALS中运动神经元变性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eedc/9237792/7fd258edecce/fnmol-15-894230-g001.jpg

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