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Identification of brain-enriched proteins in the cerebrospinal fluid proteome by LC-MS/MS profiling and mining of the Human Protein Atlas

机译:通过LC-MS / MS分析和人类蛋白图谱的挖掘鉴定脑脊液蛋白质组中脑富集的蛋白

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Background Cerebrospinal fluid (CSF) is a proximal fluid which communicates closely with brain tissue, contains numerous brain-derived proteins and thus represents a promising fluid for discovery of biomarkers of central nervous system (CNS) diseases. The main purpose of this study was to generate an extensive CSF proteome and define brain-related proteins identified in CSF, suitable for development of diagnostic assays. Methods Six non-pathological CSF samples from three female and three male individuals were selected for CSF analysis. Samples were first subjected to strong cation exchange chromatography, followed by LC-MS/MS analysis. Secreted and membrane-bound proteins enriched in the brain tissues were retrieved from the Human Protein Atlas. Results In total, 2615 proteins were identified in the CSF. The number of proteins identified per individual sample ranged from 1109 to 1421, with inter-individual variability between six samples of 21?%. Based on the Human Protein Atlas, 78 brain-specific proteins found in CSF samples were proposed as a signature of brain-enriched proteins in CSF. Conclusion A combination of Human Protein Atlas database and experimental search of proteins in specific body fluid can be applied as an initial step in search for disease biomarkers specific for a particular tissue. This signature may be of significant interest for development of novel diagnostics of CNS diseases and identification of drug targets.
机译:背景技术脑脊液(CSF)是一种与脑组织紧密沟通的近端流体,包含众多脑源性蛋白质,因此代表了发现中枢神经系统(CNS)疾病生物标志物的有希望的流体。这项研究的主要目的是生成广泛的CSF蛋白质组,并定义在CSF中鉴定出的脑相关蛋白,适用于诊断分析的开发。方法选择三名女性和三名男性的六份非病理性脑脊液样本进行脑脊液分析。首先对样品进行强阳离子交换色谱,然后进行LC-MS / MS分析。从人类蛋白质图谱中检索到富含脑组织的分泌蛋白和膜结合蛋白。结果在脑脊液中共鉴定出2615种蛋白质。每个样品中鉴定出的蛋白质数量范围为1109至1421,六个样品之间的个体差异为21%。根据人类蛋白质图谱,有人提出在脑脊液样本中发现78种脑特异性蛋白质,作为脑脊液中脑富集蛋白质的标志。结论人类蛋白质图谱数据库与特定体液中蛋白质的实验搜索相结合,可以用作搜索特定组织特异性疾病生物标志物的第一步。该签名对于开发中枢神经系统疾病的新型诊断方法和确定药物靶标可能具有重大意义。

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