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首页> 外文期刊>European journal of mass spectrometry >Glycoproteome study in myocardial lesions serum by integrated mass spectrometry approach: preliminary insights
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Glycoproteome study in myocardial lesions serum by integrated mass spectrometry approach: preliminary insights

机译:整合质谱法研究心肌病变血清中的糖蛋白组学:初步见解

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摘要

Bottom up proteomics requires efficient and selective pre-fractionation procedures to simplify the analysis of the enormous number of peptides resulting from the hydrolysis of a cellular extract enabling the detection, identification and the structural characterization of the post-translational modifications. Glycosylation, a well-known post-translational modification, plays a key rote in the enormous complexity, and heterogeneity of the human blood serum proteome. Thereby, characterization of glycosylation from serum is a challenging task, even for the existing sophisticated analytical methodologies. Here we report a glycoproteomics study on the identification of even low abundant glycoproteins, including the localization of N-glycosylation sites and the glycan profiling in human sera from healthy and myocarditis affected donors. The strategy is simply based on proteolytic digestion of total serum proteins followed by a single enrichment step of glycopeptides on ConA Lectin affinity chromatography. Glycopeptides were then deglycosylated by PNGaseF treatment and nano-Liquid chromatography-electrospray ionization tandem mass spectrometry analyses of the free peptides provided the basis for both identification of the individual proteins and elucidation of their modification sites. Moreover, glycan profilings could be obtained by matrix-assisted laser desorption/ionization mass spectrometry analysis of the released oligosaccharides. Our data led to the identification of 68 different glycosylation sites within 49 different proteins. Moreover, the analyses carried out on glycans represent the first picture of a glycosylation pattern in myocardial lesions. As a whole, several differences in the glycosylation patterns from different sera were observed, thus indicating glycan profiting as a possible toot to discriminate among different diseases.
机译:自下而上的蛋白质组学需要有效和选择性的预分离步骤,以简化对由于细胞提取物水解而产生的大量肽的分析,从而能够进行翻译后修饰的检测,鉴定和结构表征。糖基化是一种众所周知的翻译后修饰,在人类血清蛋白质组的巨大复杂性和异质性中起着关键作用。因此,即使对于现有的复杂分析方法,从血清中表征糖基化也是一项艰巨的任务。在这里,我们报告了糖蛋白组学研究,该研究对什至是低丰度糖蛋白的鉴定,包括从健康和心肌炎影响的供体中人血清中N-糖基化位点的定位和聚糖谱分析。该策略仅基于总血清蛋白的蛋白水解消化,然后在ConA凝集素亲和色谱上进行糖肽的单个富集步骤。然后通过PNGaseF处理将糖肽去糖基化,对游离肽进行纳米液相色谱-电喷雾电离串联质谱分析,这为鉴定单个蛋白质和阐明其修饰位点提供了基础。此外,可以通过对释放的寡糖进行基质辅助激光解吸/电离质谱分析来获得聚糖谱。我们的数据导致在49种不同蛋白质中鉴定出68个不同的糖基化位点。此外,对聚糖进行的分析代表了心肌损伤中糖基化模式的第一张图片。总体上,观察到了来自不同血清的糖基化模式的几个差异,因此表明聚糖获利可能是区别于不同疾病的嘟嘟声。

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