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通过吉拉德试剂T对还原性聚糖进行靶向衍生化(GTOD)实现灵敏且稳健的基质辅助激光解吸电离飞行时间质谱糖组学分析。

Sensitive and robust MALDI-TOF-MS glycomics analysis enabled by Girard's reagent T on-target derivatization (GTOD) of reducing glycans.

作者信息

Zhang Ying, Wang Bo, Jin Wanjun, Wen Yanan, Nan Lijing, Yang Mingming, Liu Rendan, Zhu Yuyang, Wang Chengjian, Huang Linjuan, Song Xuezheng, Wang Zhongfu

机构信息

Educational Ministry Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Science, Northwest University, 229 Northern Taibai Road, Xi'an, 710069, PR China.

Department of Biochemistry, Emory University School of Medicine, 1510 Clifton Road, Atlanta, GA, 30322, USA.

出版信息

Anal Chim Acta. 2019 Feb 7;1048:105-114. doi: 10.1016/j.aca.2018.10.015. Epub 2018 Oct 9.

Abstract

Sensitive glycomics analysis by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) is of great importance but significantly hampered by their low ionization efficiency and labile sialic acid moieties. Chemical derivatization offers a viable way to improve both the ionization efficiency and analytical sensitivity of the glycans in MS analysis by altering their hydrophobicity or charge property. Here we employed Girard's reagent T (GT) for on-target derivatization (GTOD) of reducing glycan under mild acid condition to form stable hydrazones at room temperature, allowing rapid and sensitive identification of neutral and sialylated glycans in positive-ion mode as only permanently positive charged molecular ions without multiple ion adducts by MALDI-TOF-MS. The MS signal intensities of lactose, sialylated N-glycans derived from bovine fetuin and neutral N-glycans derived from RNaseB and ovalbumin were boosted by 7.44, 9.13, 12.96 and 13.47 folds on average (n = 3), respectively. More importantly, after GTOD strategy, unwanted desialylation of sialylated glycans during MS was suppressed. The detection limit of the assay is desirable since the nanogram of N-glycans derived from 0.16 μg ovalbumin could be detected. The assay demonstrated good stability (RSD≤2.95%, within 10 days), reliable reproducibility (RSD = 2.96%, n = 7) and a desirable linear dynamic range from 78 nmol/mL to 10 μmol/mL. The strategy has been successfully applied to MS analysis of reducing glycans from human milks, neutral and sialylated O-, N-glycans from glycoproteins, and reducing glycans derived from glycosphingolipids, presenting neater [M] signals which allow detection of more low-abundance glycans and assignation of Neu5Ac vs. Neu5Gc or fucose vs. hexose in glycans due to the absence of the ambiguous interpretation from multiple peaks (ion adducts [M+Na] and [M+K]). Moreover, the GTOD assay prevents desialylation during MALDI-TOF-MS profiling and enables distinct linkage-specific characterization of terminal sialic acids of N-glycans derived from human serum protein when combines with an esterification.

摘要

通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)进行灵敏的糖组学分析非常重要,但由于其低电离效率和不稳定的唾液酸部分而受到显著阻碍。化学衍生化提供了一种可行的方法,通过改变聚糖的疏水性或电荷性质来提高MS分析中聚糖的电离效率和分析灵敏度。在这里,我们使用吉拉德试剂T(GT)在温和酸性条件下对还原聚糖进行靶上衍生化(GTOD),在室温下形成稳定的腙,从而通过MALDI-TOF-MS在正离子模式下快速灵敏地鉴定中性和唾液酸化聚糖,因为只有永久带正电荷的分子离子,而没有多个离子加合物。乳糖、源自牛胎球蛋白的唾液酸化N-聚糖以及源自核糖核酸酶B和卵清蛋白的中性N-聚糖的MS信号强度平均分别提高了7.44、9.13、12.96和13.47倍(n = 3)。更重要的是,采用GTOD策略后,MS过程中唾液酸化聚糖不必要的去唾液酸化被抑制。该检测方法的检测限令人满意,因为可以检测到源自0.16μg卵清蛋白的纳克级N-聚糖。该检测方法显示出良好的稳定性(10天内RSD≤2.95%)、可靠的重现性(RSD = 2.96%,n = 7)以及78 nmol/mL至10μmol/mL的理想线性动态范围。该策略已成功应用于母乳中还原聚糖、糖蛋白中中性和唾液酸化O-、N-聚糖以及糖鞘脂衍生的还原聚糖的MS分析,呈现出更清晰的[M]信号,由于没有多个峰(离子加合物[M+Na]和[M+K])的模糊解释,从而能够检测到更多低丰度聚糖,并确定聚糖中Neu5Ac与Neu5Gc或岩藻糖与己糖的差异。此外,GTOD检测方法可防止MALDI-TOF-MS分析过程中的去唾液酸化,并且当与酯化反应结合时,能够对源自人血清蛋白的N-聚糖的末端唾液酸进行独特的连接特异性表征。

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