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人类尿液外泌体蛋白质组揭示其有氧呼吸能力。

Human urinary exosome proteome unveils its aerobic respiratory ability.

作者信息

Bruschi Maurizio, Santucci Laura, Ravera Silvia, Candiano Giovanni, Bartolucci Martina, Calzia Daniela, Lavarello Chiara, Inglese Elvira, Ramenghi Luca A, Petretto Andrea, Ghiggeri Gian Marco, Panfoli Isabella

机构信息

Division of Nephrology, Dialysis, and Transplantation and Laboratory on Pathophysiology of Uremia, Istituto Giannina Gaslini, Genoa, Italy.

Dipartimento di Farmacia, Laboratorio di Biochimica, Università di Genova, Genoa, Italy.

出版信息

J Proteomics. 2016 Mar 16;136:25-34. doi: 10.1016/j.jprot.2016.02.001. Epub 2016 Feb 2.

Abstract

UNLABELLED

Exosomes are 40-100-nm vesicles released by most cell types after fusion of multivesicular endosomes with the plasma membrane. Exosomes, ubiquitary in body fluids including urines, contain proteins and RNA species specific of the tissue of origin. Exosomes from urine have been extensively studied as a promising reservoir for disease biomarkers. Here, we report the proteome analysis of urinary exosomes compared to urinoma, studied by Orbitrap mass spectrometry. A discovery approach was utilized on the sample. 3429 proteins were present, with minimal overlapping among exosome and urinoma. 959 proteins (28%) in exosome and 1478 proteins (43%) in urinoma were exclusively present in only one group. By cytoscape analysis, the biological process gene ontology was correlated to their probability (P ≤ 0.05) to be functional. This was never studied before and showed a significant clustering around metabolic functions, in particular to aerobic ATP production. Urinary exosomes carry out oxidative phosphorylation, being able to synthesize ATP and consume oxygen. A previously unsuspected function emerges for human urinary exosomes as bioactive vesicles that consume oxygen to aerobically synthesize ATP. Determination of normal human urine proteome can help generate the healthy urinary protein database for comparison, useful for various renal diseases.

BIOLOGICAL SIGNIFICANCE

The findings reported represent a significant advance in the understanding of the healthy human urinary proteome. The methodology utilized to analyze the collection of proteomic data allowed the assessment of the unique composition of urinary exosomes with respect to urinoma and to elucidate the presence in the former of molecular pathways previously unknown. The paper has the potential to impact its field of research, due to the biological relevance of the metabolic capacity of urinary exosomes, which may represent their important general feature.

摘要

未标记

外泌体是多泡体与质膜融合后由大多数细胞类型释放的40 - 100纳米囊泡。外泌体存在于包括尿液在内的多种体液中,含有起源组织特有的蛋白质和RNA种类。尿液中的外泌体作为疾病生物标志物的潜在来源已得到广泛研究。在此,我们报告了通过轨道阱质谱法对尿液外泌体与尿瘤进行蛋白质组分析的结果。对样本采用了发现法。共检测到3429种蛋白质,外泌体和尿瘤之间的重叠极少。外泌体中有959种蛋白质(28%)和尿瘤中有1478种蛋白质(43%)仅在一组中存在。通过Cytoscape分析,生物学过程基因本体与其功能概率(P≤0.05)相关。此前从未有过此类研究,结果显示在代谢功能尤其是有氧ATP生成方面有显著聚类。尿液外泌体进行氧化磷酸化,能够合成ATP并消耗氧气。人类尿液外泌体展现出一种先前未被怀疑的功能,即作为消耗氧气以有氧方式合成ATP的生物活性囊泡。测定正常人类尿液蛋白质组有助于生成用于比较的健康尿液蛋白质数据库,对各种肾脏疾病有用。

生物学意义

所报告的研究结果在对健康人类尿液蛋白质组的理解方面取得了重大进展。用于分析蛋白质组数据集合的方法能够评估尿液外泌体相对于尿瘤的独特组成,并阐明前者中先前未知的分子途径的存在。鉴于尿液外泌体代谢能力的生物学相关性,本文有可能对其研究领域产生影响,这可能是它们重要的总体特征。

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