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首页> 外文期刊>Molecular brain >Brain transcriptome analysis reveals subtle effects on mitochondrial function and iron homeostasis of mutations in the SORL1 gene implicated in early onset familial Alzheimer’s disease
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Brain transcriptome analysis reveals subtle effects on mitochondrial function and iron homeostasis of mutations in the SORL1 gene implicated in early onset familial Alzheimer’s disease

机译:脑转录组分析揭示了对早期发作的SORL1基因中突变的线粒体功能和铁稳态的微妙影响,其涉及早期发作的家族性阿尔茨海默病

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To prevent or delay the onset of Alzheimer’s disease (AD), we must understand its molecular basis. The great majority of AD cases arise sporadically with a late onset after 65?years of age (LOAD). However, rare familial cases of AD can occur due to dominant mutations in a small number of genes that cause an early onset prior to 65?years of age (EOfAD). As EOfAD and LOAD share similar pathologies and disease progression, analysis of EOfAD genetic models may give insight into both subtypes of AD. Sortilin-related receptor 1 (SORL1) is genetically associated with both EOfAD and LOAD and provides a unique opportunity to investigate the relationships between both forms of AD. Currently, the role of SORL1 mutations in AD pathogenesis is unclear. To understand the molecular consequences of SORL1 mutation, we performed targeted mutagenesis of the orthologous gene in zebrafish. We generated an EOfAD-like mutation, V1482Afs, and a putatively null mutation, to investigate whether EOfAD-like mutations in sorl1 display haploinsufficiency by acting through loss-of-function mechanisms. We performed mRNA-sequencing on whole brains, comparing wild type fish with their siblings heterozygous for EOfAD-like or putatively?loss-of-function mutations in sorl1, or transheterozygous for these mutations. Differential gene expression analysis identified a small number of differentially expressed genes due to the?sorl1 genotypes. We also performed enrichment analysis on all detectable genes to obtain a more complete view on changes to gene expression by performing three methods of gene set enrichment analysis, then calculated an overall significance value using the harmonic mean p-value. This identified subtle effects on expression of genes involved in energy production, mRNA translation and mTORC1 signalling in both the EOfAD-like and null mutant brains, implying that these effects are due to sorl1 haploinsufficiency. Surprisingly, we also observed changes to expression of genes occurring only in the EOfAD-mutation carrier brains, suggesting gain-of-function effects. Transheterozygosity for the EOfAD-like and null mutations (i.e. lacking wild type sorl1), caused apparent effects on iron homeostasis and other transcriptome changes distinct from the single-mutation heterozygous fish. Our results provide insight into the possible early brain molecular effects of an EOfAD mutation in human SORL1. Differential effects of heterozygosity and complete loss of normal SORL1 expression are revealed.
机译:为了防止或延迟阿尔茨海默病(AD)的发作,我们必须了解其分子基础。大多数广告案件均在65年龄(负荷)之后偶尔发病。然而,由于少量基因中的显性突变导致65岁(EoFad)之前的少数基因中,可以发生稀有的家庭病例。随着EOFAD和载荷份额相似的病理和疾病进展,EOFAD遗传模型的分析可能会深入了解广告的两种亚型。相关的受体受体1(SORL1)是与eofad和负载的遗传相关,并提供了调查两种形式之间的关系的独特机会。目前,Sorl1突变在AD发病机制中的作用尚不清楚。为了了解SORL1突变的分子后果,我们在斑马鱼中进行了靶向基因的靶向诱变。我们生成了类似型突变的突变,V1482AF和稳定性突变,以研究SOOFAD样突变是否通过作用于功能丧失机制来显示出臭氧化合物。我们对整个大脑进行MRNA测序,将野生型鱼与其兄弟姐妹的杂合,用于eoFAD样或令人携带的官能官能损失,或用于这些突变的跨吻生基因。差异基因表达分析鉴定了少量差异表达的基因由于αSorl1基因型引起的。我们还对所有可检测基因进行富集分析,以通过进行三种基因组富集分析方法对基因表达的变化进行更完整的观点,然后使用谐波平均值P值计算总意义值。这鉴定了对诸如EoFAD型和空突变体脑中的能量产生,mRNA平移和MTORC1信号传导中所涉及的基因表达的微妙影响,这意味着这些效应是由于Sorl1臭氧水碎量。令人惊讶的是,我们还观察到仅在EoFAD-突变载体脑中发生的基因表达的变化,这表明致功能效应。用于EOFAD样和零突变(即缺乏野生型SORL1)的跨吻型合精,对铁袜和其他转录组的显而易见的效果不同于单突杂合鱼。我们的结果提供了对人SORL1中可能的早期大脑分子突变的洞察力。揭示了杂合性和完全损失常规SORL1表达的差异影响。

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