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果蝇中SOX5直系同源基因的沉默会导致异常的神经元发育和行为障碍。

Silencing of the Drosophila ortholog of SOX5 leads to abnormal neuronal development and behavioral impairment.

作者信息

Li Airong, Hooli Basavaraj, Mullin Kristina, Tate Rebecca E, Bubnys Adele, Kirchner Rory, Chapman Brad, Hofmann Oliver, Hide Winston, Tanzi Rudolph E

机构信息

Genetics and Aging Research Unit, Department of Neurology, Massachusetts General Hospital, Harvard Medical School, MassGeneral Institute for Neurodegenerative Diseases, Charlestown, MA 02129, USA.

Department of Biostatistics, Harvard T. H. Chan School of Public Health, Boston, MA 02115, USA.

出版信息

Hum Mol Genet. 2017 Apr 15;26(8):1472-1482. doi: 10.1093/hmg/ddx051.

Abstract

SOX5 encodes a transcription factor that is expressed in multiple tissues including heart, lung and brain. Mutations in SOX5 have been previously found in patients with amyotrophic lateral sclerosis (ALS) and developmental delay, intellectual disability and dysmorphic features. To characterize the neuronal role of SOX5, we silenced the Drosophila ortholog of SOX5, Sox102F, by RNAi in various neuronal subtypes in Drosophila. Silencing of Sox102F led to misorientated and disorganized michrochaetes, neurons with shorter dendritic arborization (DA) and reduced complexity, diminished larval peristaltic contractions, loss of neuromuscular junction bouton structures, impaired olfactory perception, and severe neurodegeneration in brain. Silencing of SOX5 in human SH-SY5Y neuroblastoma cells resulted in a significant repression of WNT signaling activity and altered expression of WNT-related genes. Genetic association and meta-analyses of the results in several large family-based and case-control late-onset familial Alzheimer's disease (LOAD) samples of SOX5 variants revealed several variants that show significant association with AD disease status. In addition, analysis for rare and highly penetrate functional variants revealed four novel variants/mutations in SOX5, which taken together with functional prediction analysis, suggests a strong role of SOX5 causing AD in the carrier families. Collectively, these findings indicate that SOX5 is a novel candidate gene for LOAD with an important role in neuronal function. The genetic findings warrant further studies to identify and characterize SOX5 variants that confer risk for AD, ALS and intellectual disability.

摘要

SOX5编码一种转录因子,该转录因子在包括心脏、肺和脑在内的多种组织中表达。先前已在肌萎缩侧索硬化症(ALS)患者以及发育迟缓、智力残疾和畸形特征患者中发现SOX5突变。为了表征SOX5在神经元中的作用,我们通过RNA干扰在果蝇的各种神经元亚型中沉默了SOX5的果蝇直系同源基因Sox102F。Sox102F的沉默导致微刚毛排列方向错误和紊乱、树突分支(DA)较短且复杂性降低的神经元、幼虫蠕动收缩减少、神经肌肉接头终扣结构丧失、嗅觉感知受损以及大脑中的严重神经退行性变。在人SH-SY5Y神经母细胞瘤细胞中沉默SOX5导致WNT信号活性显著受到抑制以及WNT相关基因表达改变。对几个基于大家族和病例对照的晚发性家族性阿尔茨海默病(LOAD)样本中SOX5变体的结果进行遗传关联和荟萃分析,发现了几个与AD疾病状态显著相关的变体。此外,对罕见且高 penetrance 功能变体的分析揭示了SOX5中的四个新变体/突变,结合功能预测分析,表明SOX5在携带家族中导致AD方面起重要作用。总体而言,这些发现表明SOX5是LOAD的一个新候选基因,在神经元功能中起重要作用。这些遗传学发现值得进一步研究,以鉴定和表征赋予AD、ALS和智力残疾风险的SOX5变体。

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