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Differential proteomic analysis of serum exosomes reveals alterations in progression of Parkinson disease

机译:血清外泌体的差异蛋白质组学分析显示帕金森病进展的改变

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摘要

Exosomes are nanometer-sized vesicles with intercellular communication functions, and their encapsulated proteins may participate in the pathological process of neurodegenerative disorders. The aim of this study was to identify the protein changes of serum exosomes in Parkinson disease (PD) patients with different disease progress types, and to identify potential biomarkers. The exosomes of PD patients with different severity and healthy control group were isolated from serum. The exosome proteins were analyzed by mass spectrometry with label-free quantitative proteomics . A total of 429 proteins were identified, of which 14 were significantly different in mild and severe PD patients. The expression levels of 7 proteins, including pigmented epithelium-derived factor, afamin, apolipoprotein D and J, were significantly increased in PD patients. The expression levels of 7 proteins, including complement C1q and protein Immunoglobulin Lambda Variable 1-33 (IGLV1-33)Cluster -33, were decreased in PD patients. These differentially expressed proteins were analyzed by gene ontology and Kyoto Encyclopedia of Genes and Genomes enrichment analysis, which confirmed that the interaction between prion diseases and ECM receptors was the most significant pathways of enrichment. The changes of proteins and pathways may be related to the pathophysiological mechanism of PD. Therefore, some of these proteins could be considered as potential biomarkers for early PD diagnosis.
机译:外泌体是具有细胞间通信功能的纳米尺寸的囊泡,其包封的蛋白质可以参与神经变性障碍的病理过程。本研究的目的是鉴定帕金森病(PD)不同疾病进展类型的患者血清外来血清外虫的蛋白质变化,并鉴定潜在的生物标志物。从血清中分离出不同严重程度和健康对照组的PD患者的外来。通过用无标记的定量蛋白质组学通过质谱法分析外渗蛋白。鉴定了共429个蛋白质,其中温和和严重的PD患者14在显着不同。在PD患者中,7种蛋白质的表达水平为7蛋白,包括着色的上皮衍生的因子,AFAMIN,载脂蛋白D和J。在PD患者中降低了7种蛋白质的表达水平,包括补体C1Q和蛋白质免疫球蛋白Lambda变量1-33(IgLv1-33)簇-33。这些差异表达的蛋白质通过基因本体和基因组富集分析进行了分析了基因和基因组富集分析,这证实朊病毒疾病与ECM受体之间的相互作用是富集最重要的途径。蛋白质和途径的变化可能与PD的病理生理机制有关。因此,一些蛋白质可以被认为是早期PD诊断的潜在生物标志物。

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