Wu Linlin, Fang Caiyun, Zhang Lei, Yuan Wenjuan, Yu Xiaofang, Lu Haojie
Shanghai Cancer Center and Department of Chemistry, Fudan University, Shanghai 200032, P. R.China.
Institutes of Biomedical Sciences and NHC Key Laboratory of Glycoconjugates Research, Fudan University, Shanghai 200032, P. R.China.
Anal Chem. 2021 Mar 16;93(10):4398-4407. doi: 10.1021/acs.analchem.0c04028. Epub 2021 Mar 4.
Glycation plays a pathogenic role in many age-related degenerative pathological conditions, such as diabetes, end-stage renal diseases, and cardiovascular diseases. Mass spectrometry-based qualitative and quantitative analysis methods have been greatly developed and contribute to our understanding of protein glycation. However, it is still challenging to sensitively and accurately quantify endogenous glycated proteome in biological samples. Herein, we proposed an integrated and robust quantitative strategy for comprehensive profiling of early-stage glycated proteome. In this strategy, a filter-assisted sample preparation method was applied to reduce sample loss and improve reproducibility of sample preparation, contributing to high-throughput analysis and accurate quantification of endogenous glycated proteins with low abundance. Standard glycated peptides were spiked and performed the subsequent process together with complex samples both in label-free quantification and multiple reaction monitoring (MRM) analysis, contributing to the improvement of quantitative accuracy. In parallel, a novel approach was developed for the synthesis of heavy isotope-labeled glycated peptides used in MRM analysis. By this way, a total of 1128 endogenous glycated peptides corresponding to 203 serum proteins were identified from 60 runs of 10 pairs of hemodialysis patients with and without cardiovascular complications, and 234 glycated peptides corresponding to 63 proteins existed in >70% runs, among which 17 peptides were discovered to be differentially glycated ( < 0.05, fold-change > 1.5 or <0.67). Furthermore, we validated the glycation difference of four target peptides in 46 serum samples using MRM analysis, which were consistent with our results of label-free quantification.
糖基化在许多与年龄相关的退行性病理状况中发挥致病作用,如糖尿病、终末期肾病和心血管疾病。基于质谱的定性和定量分析方法已得到极大发展,有助于我们对蛋白质糖基化的理解。然而,灵敏且准确地定量生物样品中的内源性糖化蛋白质组仍然具有挑战性。在此,我们提出了一种综合且稳健的定量策略,用于全面分析早期糖化蛋白质组。在该策略中,采用了滤膜辅助样品制备方法以减少样品损失并提高样品制备的重现性,有助于对低丰度内源性糖化蛋白质进行高通量分析和准确定量。在无标记定量和多反应监测(MRM)分析中,将标准糖化肽段加入并与复杂样品一起进行后续处理,有助于提高定量准确性。同时,开发了一种用于合成MRM分析中使用的重同位素标记糖化肽段的新方法。通过这种方式,从10对有和没有心血管并发症的血液透析患者的60次检测中,共鉴定出对应于203种血清蛋白的1128个内源性糖化肽段,并且有63种蛋白质对应的234个糖化肽段在超过70%的检测中存在,其中发现17个肽段存在糖化差异(P<0.05,变化倍数>1.5或<0.67)。此外,我们使用MRM分析在46个血清样品中验证了4个目标肽段的糖化差异,这与我们的无标记定量结果一致。