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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Systematic examination of protein extraction, proteolytic glycopeptide enrichment and MS/MS fragmentation techniques for site-specific profiling of human milk N-glycoproteins
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Systematic examination of protein extraction, proteolytic glycopeptide enrichment and MS/MS fragmentation techniques for site-specific profiling of human milk N-glycoproteins

机译:对人乳N-糖蛋白的特异性特异性分析的蛋白质提取,蛋白水解糖肽富集和MS / MS分粉技术的系统检测

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摘要

Human milk contains numerous N-glycoproteins with functions that provide protection to the infant. Increasing understanding of the functional role of human milk glycoproteins within the infant requires toolsets to comprehensively profile their site-specific glycosylation patterns. However, optimized methods for site-specific glycosylation analysis across the entire human milk proteome are not available. Therefore, we performed a systematic analysis of techniques for profiling the sites and compositions of N-glycans in human milk using liquid chromatography/mass spectrometry. To decrease interference from non-target molecules, we compared techniques for protein extraction, including ethanol (EtOH) precipitation, trichloroacetic acid precipitation, molecular weight cut-off filtration and techniques for tryptic glycopeptide enrichment, including C18-, porous graphitized carbon and hydrophilic interaction liquid chromatography (HILIC)-solid phase extraction (SPE) and acetone precipitation. We compared the capacity of higher-energy collision dissociation, electron-transfer dissociation and electron-transfer/higher-energy collision dissociation (EThcD) to produce fragment ions that would enable effective identification of the glycan composition, peptide sequence and glycosylation site. Of these methods, a combination of EtOH precipitation, HILIC-SPE and EThcD-fragmentation was the most effective for human milk N-glycopeptide profiling. This optimized approach significantly increased the number of N-glycopeptides and precursor N-glycoproteins (246 N-glycopeptides from 29 glycoproteins) compared with a more common extraction approach with no protein extraction and C18 clean-up (62 N-glycopeptides from 11 glycoproteins). The advancement in methods for human milk N-glycoproteins provided by this study represents a key step for better understanding the function of glycoproteins within the breast milk-fed infant.
机译:母乳中含有大量N-糖蛋白,具有保护婴儿的功能。提高对母乳糖蛋白在婴儿体内的功能作用的理解需要工具集来全面分析其位点特异性糖基化模式。然而,目前还没有针对整个母乳蛋白质组进行位点特异性糖基化分析的优化方法。因此,我们使用液相色谱/质谱法对母乳中N-聚糖的位置和组成进行了系统分析。为了减少非目标分子的干扰,我们比较了蛋白质提取技术,包括乙醇(EtOH)沉淀、三氯乙酸沉淀、分子量截止过滤和胰蛋白酶糖肽富集技术,包括C18-,多孔石墨化碳和亲水作用液相色谱(HILIC)-固相萃取(SPE)和丙酮沉淀。我们比较了高能碰撞离解、电子转移离解和电子转移/高能碰撞离解(EThcD)产生碎片离子的能力,这些碎片离子能够有效识别聚糖组成、肽序列和糖基化位点。在这些方法中,EtOH沉淀、HILIC-SPE和EThcD裂解的组合对母乳N-糖肽分析最有效。这种优化方法显著增加了N-糖肽和前体N-糖蛋白(来自29种糖蛋白的246个N-糖肽)的数量,相比于不进行蛋白质提取和C18清理的更常见提取方法(来自11种糖蛋白的62个N-糖肽)。这项研究提供的母乳N-糖蛋白方法的进展是更好地理解母乳喂养婴儿中糖蛋白功能的关键一步。

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