首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Site-specific characterization and quantitation of N-glycopeptides in PKM2 knockout breast cancer cells using DiLeu isobaric tags enabled by electron-transfer/higher-energy collision dissociation (EThcD)
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Site-specific characterization and quantitation of N-glycopeptides in PKM2 knockout breast cancer cells using DiLeu isobaric tags enabled by electron-transfer/higher-energy collision dissociation (EThcD)

机译:使用电子转移/更高能量碰撞解离(ethcd)的迪伊u等乳腺癌细胞中PKM2敲除乳腺癌细胞中N-Glycopeptates的特异性表征和定量

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摘要

The system-wide site-specific analysis of intact glycopeptides is crucial for understanding the exact functional relevance of protein glycosylation. A dedicated workflow with the capability to simultaneously characterize and quantify intact glycopeptides in a site-specific and high-throughput manner is essential to reveal specific glycosylation alteration patterns in complex biological systems. In this study, an enhanced, dedicated, large-scale site-specific quantitative N-glycoproteomics workflow has been established, which includes improved specific extraction of membrane-bound glycoproteins using the filter aided sample preparation (FASP) method, enhanced enrichment of N-glycopeptides using sequential hydrophilic interaction liquid chromatography (HILIC) and multi-lectin affinity (MLA) enrichment, sitespecific N-glycopeptide characterization enabled by EThcD, relative quantitation utilizing isobaric N, Ndimethyl leucine (DiLeu) tags and automated FDR-based large-scale data analysis by Byonic. For the first time, our study shows that HILIC complements to a very large extent to MLA enrichment with only 20% overlapping in enriching intact N-glycopeptides. When applying the developed workflow to site-specific N-glycoproteome study in PANC1 cells, we were able to identify 1067 intact N-glycopeptides, representing 311 glycosylation sites and 88 glycan compositions from 205 glycoproteins. We further applied this approach to study the glycosylation alterations in PKM2 knockout cells vs. parental breast cancer cells and revealed altered N-glycoprotein/N-glycopeptide patterns and very different glycosylation microheterogeneity for different types of glycans. To obtain a more comprehensive map of glycoprotein alterations, N-glycopeptides after treatment with PNGase F were also analyzed. A total of 484 deglycosylated peptides were quantified, among which 81 deglycosylated peptides from 70 glycoproteins showed significant changes. KEGG pathway analysis revealed that the PI3K/
机译:完整糖肽的系统范围的特异性分析对于了解蛋白质糖基化的确切功能相关性至关重要。具有同时表征和量化特异性和高通量的完整糖肽的能力的专用工作流程对于揭示复杂生物系统中的特定糖基化改变模式至关重要。在该研究中,已经建立了增强的,专用的大规模特异性定量的N-糖蛋白酶工作流程,其包括使用过滤辅助样品制备(FASP)方法的改善的糖蛋白的特定提取,增强了N-的富集使用顺序亲水性相互作用液相色谱(HILIC)和多凝集素亲和力(MLA)富集,鉴别的N-糖肽表征,通过ETHCD,相对定量利用等异虫N,Ndimaricn亮氨酸(DILEU)标签和自动化FDR基大规模数据通过致作物分析。我们的研究首次表明,HILIC在很大程度上与MLA富集相吻合,仅在富集完整的N-甘甘露胶肽时具有20%重叠。当将开发的工作流程应用于Panc1细胞的特异性N-甘油膜研究时,我们能够鉴定1067个完整的N-糖肽,代表来自205个糖蛋白的311个糖基化位点和88个聚糖组合物。我们进一步应用这种方法来研究PKM2敲除细胞中的糖基化改变与亲本乳腺癌细胞,并显示出改变的N-糖蛋白/ N-糖肽图案和对不同类型的聚糖的糖基化微肽相能具有非常不同类型的聚糖。为了获得更全面的糖蛋白改变地图,还分析了用PNGase F处理后的N-甘肽。量化了484种脱糖基化肽,其中来自70个糖蛋白的81种脱糖基化肽显示出显着的变化。 Kegg途径分析显示PI3K /

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