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In-depth mass spectrometric mapping of the human vitreous proteome

机译:玻璃体蛋白质组的深度质谱图

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摘要

Mapping of proteins involved in normal eye functions is a prerequisite to identify pathological changes during eye disease processes. We therefore analysed the proteome of human vitreous by applying in-depth proteomic screening technologies. For ethical reasons human vitreous samples were obtained by vitrectomy from “surrogate normal patients” with epiretinal gliosis that is considered to constitute only negligible pathological vitreoretinal changes. We applied different protein prefractionation strategies including liquid phase isoelectric focussing, 1D SDS gel electrophoresis and a combination of both and compared the number of identified proteins obtained by the respective method. Liquid phase isoelectric focussing followed by SDS gel electrophoresis increased the number of identified proteins by a factor of five compared to the analysis of crude unseparated human vitreous. Depending on the prefractionation method proteins were subjected to trypsin digestion either in-gel or in solution and the resulting peptides were analysed on a UPLC system coupled online to an LTQ Orbitrap XL mass spectrometer. The obtained mass spectra were searched against the SwissProt database using the Mascot search engine. Bioinformatics tools were used to annotate known biological functions to the detected proteins. Following this strategy we examined the vitreous proteomes of three individuals and identified 1111 unique proteins. Besides structural, transport and binding proteins, we detected 261 proteins with known enzymatic activity, 51 proteases, 35 protease inhibitors, 35 members of complement and coagulation cascades, 15 peptide hormones, 5 growth factors, 11 cytokines, 47 receptors, 30 proteins of visual perception, 91 proteins involved in apoptosis regulation and 265 proteins with signalling activity. This highly complex mixture strikingly differs from the human plasma proteome. Thus human vitreous fluid seems to be a unique body fluid. 262 unique proteins were detected which are present in all three patient samples indicating that these might represent the constitutive protein pattern of human vitreous. The presented catalogue of human vitreous proteins will enhance our understanding of physiological processes in the eye and provides the groundwork for future studies on pathological vitreous proteome changes.
机译:涉及正常眼功能的蛋白质作图是鉴定眼病过程中病理变化的先决条件。因此,我们通过应用深入的蛋白质组学筛选技术分析了人类玻璃体的蛋白质组。出于伦理原因,通过玻璃体切除术从“替代正常患者”患有视网膜前胶质增生的人体玻璃体样品中,认为这只是微不足道的病理性玻璃体视网膜病变。我们应用了不同的蛋白质预分离策略,包括液相等电聚焦,一维SDS凝胶电泳以及两者的结合,并比较了通过相应方法获得的鉴定出的蛋白质数量。相较于未分离的人体玻璃体,液相等电聚焦和SDS凝胶电泳将鉴定出的蛋白质数量增加了五倍。根据预分离方法的不同,对蛋白质进行凝胶或溶液中的胰蛋白酶消化,然后在在线连接到LTQ Orbitrap XL质谱仪的UPLC系统上分析所得的肽。使用Mascot搜索引擎在SwissProt数据库中搜索获得的质谱图。使用生物信息学工具为检测到的蛋白质注释已知的生物学功能。按照这种策略,我们检查了三个个体的玻璃体蛋白质组,并鉴定出1111种独特的蛋白质。除了结构,转运和结合蛋白外,我们还检测了261种具有已知酶活性的蛋白,51种蛋白酶,35种蛋白酶抑制剂,35种补体和凝血级联成员,15种肽激素,5种生长因子,11种细胞因子,47种受体,30种视觉蛋白感知,涉及凋亡调节的91种蛋白质和具有信号传导活性的265种蛋白质。这种高度复杂的混合物与人类血浆蛋白质组学截然不同。因此,人类玻璃体液似乎是独特的体液。在所有三个患者样本中检测到262种独特的蛋白质,表明这些蛋白质可能代表人玻璃体的组成性蛋白质模式。提出的人类玻璃体蛋白目录将增进我们对眼睛生理过程的了解,并为病理玻璃体蛋白质组变化的未来研究提供基础。

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