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[肌萎缩侧索硬化症中的胶质病理]

[Glial pathology in amyotrophic lateral sclerosis].

作者信息

Yamanaka Koji

机构信息

RIKEN Brain Science Institute.

出版信息

Rinsho Shinkeigaku. 2011 Nov;51(11):1192-4. doi: 10.5692/clinicalneurol.51.1192.

Abstract

Dominant mutations in the Cu/Zn superoxide dismutase (SOD1) gene lead to a familial form of amyotrophic lateral sclerosis (ALS). Although ubiquitous expression of mutant SOD1 provokes progressive, selective motor neuron degeneration in human and rodents due to an acquired toxic property (ies) of the mutant, genetic and chimeric mice studies using SOD1 models indicate that non-neuronal cells play important roles in neurodegeneration through non-cell autonomous mechanism. Recent discovery of TDP-43 protein accumulation as a pathological hallmark of sporadic ALS suggested that the mechanisms of neurodegeneration in SOD1-linked familial ALS and sporadic ALS may be distinct. This prompted us to test whether SOD1-ALS and sporadic ALS share the common disease mechanisms in glial cells. To address this question, we have compared gene expression profile of spinal cords of SOD1 mice and sporadic ALS patients by establishing the cell-type specific transcriptome. Significant overlap of misregulated genes enriched in microglia was observed in sporadic ALS and SOD1 mouse models. The pathway analysis indicated the innate immune system, NF-kappaB signaling, and caspase-interleukin cascade that were misregulated in glial cells, suggesting these pathways may be the potential targets for disease modifying therapy of ALS.

摘要

铜/锌超氧化物歧化酶(SOD1)基因的显性突变会导致家族性肌萎缩侧索硬化症(ALS)。尽管突变型SOD1的普遍表达会由于突变体获得的毒性特性在人类和啮齿动物中引发进行性、选择性运动神经元变性,但使用SOD1模型的基因和嵌合小鼠研究表明,非神经元细胞通过非细胞自主机制在神经变性中起重要作用。最近发现TDP-43蛋白积累是散发性ALS的病理标志,这表明与SOD1相关的家族性ALS和散发性ALS的神经变性机制可能不同。这促使我们测试SOD1-ALS和散发性ALS在胶质细胞中是否具有共同的疾病机制。为了解决这个问题,我们通过建立细胞类型特异性转录组,比较了SOD1小鼠和散发性ALS患者脊髓的基因表达谱。在散发性ALS和SOD1小鼠模型中,观察到小胶质细胞中富集的失调基因有显著重叠。通路分析表明先天免疫系统、NF-κB信号通路和半胱天冬酶-白细胞介素级联反应在胶质细胞中失调,这表明这些通路可能是ALS疾病修饰治疗的潜在靶点。

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