首页> 美国卫生研究院文献>International Journal of Proteomics >Increasing the Productivity of Glycopeptides Analysis by Using Higher-Energy Collision Dissociation-Accurate Mass-Product-Dependent Electron Transfer Dissociation
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Increasing the Productivity of Glycopeptides Analysis by Using Higher-Energy Collision Dissociation-Accurate Mass-Product-Dependent Electron Transfer Dissociation

机译:通过使用高能碰撞解离-精确的质量-产物依赖性电子转移解离来提高糖肽分析的生产率

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摘要

Currently, glycans are attracting attention from the scientific community as potential biomarkers or as posttranslational modifications (PTMs) of therapeutic proteins. However, structural characterization of glycoproteins and glycopeptides remains analytically challenging. Here, we report on the implementation of a novel acquisition strategy termed higher-energy collision dissociation-accurate mass-product-dependent electron transfer dissociation (HCD-PD-ETD) on a hybrid linear ion trap-orbitrap mass spectrometer. This acquisition strategy uses the complementary fragmentations of ETD and HCD for glycopeptides analysis in an intelligent fashion. Furthermore, the approach minimizes user input for optimizing instrumental parameters and enables straightforward detection of glycopeptides. ETD spectra are only acquired when glycan oxonium ions from MS/MS HCD are detected. The advantage of this approach is that it streamlines data analysis and improves dynamic range and duty cycle. Here, we present the benefits of HCD-PD-ETD relative to the traditional alternating HCD/ETD for a trainer set containing twelve-protein mixture with two glycoproteins: human serotransferrin, ovalbumin and contaminations of two other: bovine alpha 1 acid glycoprotein (bAGP) and bovine fetuin.
机译:当前,聚糖作为潜在的生物标志物或治疗性蛋白质的翻译后修饰(PTM)正在引起科学界的关注。然而,糖蛋白和糖肽的结构表征在分析上仍然具有挑战性。在这里,我们报告在混合线性离子阱-轨道质谱仪上实施称为高能碰撞解离-精确的质量-产物依赖的电子转移解离(HCD-PD-ETD)的新型采集策略的实施情况。这种采集策略将ETD和HCD的互补片段以智能方式用于糖肽分析。此外,该方法最大程度地减少了用于优化仪器参数的用户输入,并能够直接检测糖肽。仅当检测到来自MS / MS HCD的聚糖氧鎓离子时,才能获取ETD光谱。这种方法的优势在于,它简化了数据分析并改善了动态范围和占空比。在这里,我们介绍了HCD-PD-ETD相对于传统交替HCD / ETD的益处,该教练组包含十二种蛋白质与两种糖蛋白的混合物:人血清转铁蛋白,卵清蛋白和另外两种污染物:牛α1酸性糖蛋白(bAGP) )和牛胎球蛋白。

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