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用于肌萎缩侧索硬化症基因表达谱分析的血液RNA提取方法比较

Comparison of blood RNA extraction methods used for gene expression profiling in amyotrophic lateral sclerosis.

作者信息

Bayatti Nadhim, Cooper-Knock Johnathan, Bury Joanna J, Wyles Matthew, Heath Paul R, Kirby Janine, Shaw Pamela J

机构信息

Sheffield Institute for Translational Neuroscience, Department of Neuroscience, University of Sheffield, Sheffield, United Kingdom.

出版信息

PLoS One. 2014 Jan 27;9(1):e87508. doi: 10.1371/journal.pone.0087508. eCollection 2014.

Abstract

Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease that causes death within a mean of 2-3 years from symptom onset. There is no diagnostic test and the delay from symptom onset to diagnosis averages 12 months. The identification of prognostic and diagnostic biomarkers in ALS would facilitate earlier diagnosis and faster monitoring of treatments. Gene expression profiling (GEP) can help to identify these markers as well as therapeutic targets in neurological diseases. One source of genetic material for GEP in ALS is peripheral blood, which is routinely accessed from patients. However, a high proportion of globin mRNA in blood can mask important genetic information. A number of methods allow safe collection, storage and transport of blood as well as RNA stabilisation, including the PAXGENE and TEMPUS systems for the collection of whole blood and LEUKOLOCK which enriches for the leukocyte population. Here we compared these three systems and assess their suitability for GEP in ALS. We collected blood from 8 sporadic ALS patients and 7 controls. PAXGENE and TEMPUS RNA extracted samples additionally underwent globin depletion using GlobinClear. RNA was amplified and hybridised onto Affymetrix U133 Plus 2.0 arrays. Lists of genes differentially regulated in ALS patients and controls were created for each method using the R package PUMA, and RT-PCR validation was carried out on selected genes. TEMPUS/GlobinClear, and LEUKOLOCK produced high quality RNA with sufficient yield, and consistent array expression profiles. PAXGENE/GlobinClear yield and quality were lower. Globin depletion for PAXGENE and TEMPUS uncovered the presence of over 60% more transcripts than when samples were not depleted. TEMPUS/GlobinClear and LEUKOLOCK gene lists respectively contained 3619 and 3047 genes differentially expressed between patients and controls. Real-time PCR validation revealed similar reliability between these two methods and gene ontology analyses revealed similar pathways differentially regulated in disease compared to controls.

摘要

肌萎缩侧索硬化症(ALS)是一种神经退行性疾病,从症状出现起平均2至3年内会导致死亡。目前尚无诊断测试方法,从症状出现到确诊的延迟平均为12个月。识别ALS的预后和诊断生物标志物将有助于早期诊断和更快地监测治疗效果。基因表达谱分析(GEP)有助于识别这些标志物以及神经疾病的治疗靶点。ALS中用于GEP的遗传物质来源之一是外周血,这是从患者身上常规获取的。然而,血液中高比例的珠蛋白mRNA会掩盖重要的遗传信息。有多种方法可用于安全采集、储存和运输血液以及稳定RNA,包括用于采集全血的PAXGENE和TEMPUS系统以及富集白细胞群体的LEUKOLOCK。在此,我们比较了这三种系统,并评估它们在ALS中进行GEP的适用性。我们采集了8例散发性ALS患者和7例对照的血液。使用GlobinClear对PAXGENE和TEMPUS RNA提取样本进行额外的珠蛋白去除。RNA被扩增并与Affymetrix U133 Plus 2.0阵列杂交。使用R包PUMA为每种方法创建ALS患者和对照中差异调节基因的列表,并对选定基因进行RT-PCR验证。TEMPUS/GlobinClear和LEUKOLOCK产生了高质量且产量充足的RNA,以及一致的阵列表达谱。PAXGENE/GlobinClear的产量和质量较低。与未去除样本时相比,PAXGENE和TEMPUS的珠蛋白去除揭示了超过60%的转录本的存在。TEMPUS/GlobinClear和LEUKOLOCK基因列表分别包含3619个和3047个在患者和对照之间差异表达的基因。实时PCR验证显示这两种方法之间具有相似的可靠性,基因本体分析显示与对照相比,疾病中差异调节的途径相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2755/3903649/723bdc2da45c/pone.0087508.g001.jpg

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