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Sporadic ALS has compartment-specific aberrant exon splicing and altered cell–matrix adhesion biology

机译:散发性ALS具有特定于房室的异常外显子剪接和改变的细胞基质粘附生物学

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Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by progressive weakness from loss of motor neurons. The fundamental pathogenic mechanisms are unknown and recent evidence is implicating a significant role for abnormal exon splicing and RNA processing. Using new comprehensive genomic technologies, we studied exon splicing directly in 12 sporadic ALS and 10 control lumbar spinal cords acquired by a rapid autopsy system that processed nervous systems specifically for genomic studies. ALS patients had rostral onset and caudally advancing disease and abundant residual motor neurons in this region. We created two RNA pools, one from motor neurons collected by laser capture microdissection and one from the surrounding anterior horns. From each, we isolated RNA, amplified mRNA, profiled whole-genome exon splicing, and applied advanced bioinformatics. We employed rigorous quality control measures at all steps and validated findings by qPCR. In the motor neuron enriched mRNA pool, we found two distinct cohorts of mRNA signals, most of which were up-regulated: 148 differentially expressed genes (P ≤ 10−3) and 411 aberrantly spliced genes (P ≤ 10−5). The aberrantly spliced genes were highly enriched in cell adhesion (P ≤ 10−57), especially cell–matrix as opposed to cell–cell adhesion. Most of the enriching genes encode transmembrane or secreted as opposed to nuclear or cytoplasmic proteins. The differentially expressed genes were not biologically enriched. In the anterior horn enriched mRNA pool, we could not clearly identify mRNA signals or biological enrichment. These findings, perturbed and up-regulated cell–matrix adhesion, suggest possible mechanisms for the contiguously progressive nature of motor neuron degeneration. Data deposition: GeneChip raw data (CEL-files) have been deposited for public access in the Gene Expression Omnibus (GEO), www.ncbi.nlm.nih.gov/geo, accession number GSE18920.
机译:肌萎缩性侧索硬化症(ALS)是一种致命的神经退行性疾病,其特征在于运动神经元丢失引起的进行性无力。基本的致病机制尚不清楚,最近的证据表明异常外显子剪接和RNA处理具有重要作用。使用新的综合基因组技术,我们直接研究了快速解剖系统获得的12个散发性ALS和10个控制腰椎脊髓的外显子剪接,该系统处理了专门用于基因组研究的神经系统。 ALS患者在该区域出现延髓性发作和尾部晚期疾病,并残留大量运动神经元。我们创建了两个RNA库,一个来自激光捕获显微切割收集的运动神经元,另一个来自周围的前角。从每个人中,我们分离出RNA,扩增了mRNA,分析了全基因组外显子剪接,并应用了先进的生物信息学。我们在所有步骤均采用了严格的质量控制措施,并通过qPCR验证了发现。在富含运动神经元的mRNA库中,我们发现了两个不同的mRNA信号队列,其中大多数是上调的:148个差异表达的基因(P≤10 -3 )和411个异常剪接的基因(P ≤10 −5 )。异常剪接的基因高度富集细胞粘附(P≤10 −57 ),尤其是细胞-基质而不是细胞-细胞粘附。与核蛋白或胞质蛋白相反,大多数富集基因编码跨膜或分泌的。差异表达的基因没有生物富集。在前角富集的mRNA库中,我们无法清楚地识别mRNA信号或生物富集。这些发现,扰动和上调的细胞基质粘附,提示运动神经元变性连续发展的可能机制。数据存放:GeneChip原始数据(CEL文件)已存放在Gene Expression Omnibus(GEO)中,以供公众访问,www.ncbi.nlm.nih.gov / geo,保藏号为GSE18920。

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    《Human Molecular Genetics 》 |2010年第2期| p.313-328| 共16页
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    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

    Center for Neurogenetics & Neurotherapeutics, University of Washington, Seattle, WA 98195, USA and;

    Center for Neurogenetics & Neurotherapeutics, University of Washington, Seattle, WA 98195, USA and;

    Translational Research Program, Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA,;

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