首页> 外文期刊>Analytical chemistry >Combining Glucose Units, m/z, and Collision Cross Section Values: Multiattribute Data for Increased Accuracy in Automated Glycosphingolipid Glycan Identifications and Its Application in Triple Negative Breast Cancer
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Combining Glucose Units, m/z, and Collision Cross Section Values: Multiattribute Data for Increased Accuracy in Automated Glycosphingolipid Glycan Identifications and Its Application in Triple Negative Breast Cancer

机译:组合葡萄糖单元,M / Z和碰撞横截面值:用于提高自动糖磷脂甘油鉴定的准确性的多特征数据及其在三重阴性乳腺癌中的应用

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摘要

Glycan head-groups attached to glycosphingolipids (GSLs) found in the cell membrane bilayer can alter in response to external stimuli and disease, making them potential markers and/or targets for cellular disease states. To identify such markers, comprehensive analyses of glycan structures must be undertaken. Conventional analyses of fluorescently labeled glycans using hydrophilic interaction high-performance liquid chromatography (HILIC) coupled with mass spectrometry (MS) provides relative quantitation and has the ability to perform automated glycan assignments using glucose unit (GU) and mass matching. The use of ion mobility (IM) as an additional level of separation can aid the characterization of closely related or isomeric structures through the generation of glycan collision cross section (CCS) identifiers. Here, we present a workflow for the analysis of procainamide-labeled GSL glycans using HILIC-IM-MS and a new, automated glycan identification strategy whereby multiple glycan attributes are combined to increase accuracy in automated structural assignments. For glycan matching and identification, an experimental reference database of GSL glycans containing GU, mass, and CCS values for each glycan was created. To assess the accuracy of glycan assignments, a distance-based confidence metric was used. The assignment accuracy was significantly better compared to conventional HILIC-MS approaches (using mass and GU only). This workflow was applied to the study of two Triple Negative Breast Cancer (TNBC) cell lines and revealed potential GSL glycosylation signatures characteristic of different TNBC subtypes.
机译:附着于细胞膜双层中的糖磷脂(GSL)的甘草头部组可以响应于外部刺激和疾病而改变,使其成为细胞疾病状态的潜在标记和/或靶标。为了确定此类标记,必须进行综合分析甘草结构。使用亲水性相互作用的荧光标记的聚糖(HILIC)与质谱(MS)偶联的荧光标记的聚糖的常规分析提供相对定量,并且可以使用葡萄糖单元(GU)和质量匹配来执行自动化聚糖作业的能力。作为额外的分离水平的离子迁移率(IM)可以通过产生糖粉碰撞横截面(CCS)标识符来帮助表征密切相关的或异构结构。这里,我们使用HILIC-IM-MS和新的自动化聚糖识别策略分析Procabainamide标记的GSL Glycans的工作流程,其中组合多个糖类属性以提高自动结构分配的精度。对于聚糖匹配和鉴定,创建了含有GU,质量和CCS值的GSL聚糖的实验参考数据库。为了评估Glycan作业的准确性,使用了一种距离的置信度量。与传统的HILIC-MS方法相比,分配准确性明显更好(仅使用质量和顾客)。该工作流程应用于两个三重阴性乳腺癌(TNBC)细胞系的研究,并揭示了不同TNBC亚型的潜在GSL糖基化特征。

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  • 来源
    《Analytical chemistry》 |2019年第14期|共8页
  • 作者单位

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Antibody Discovery Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    Waters Asia Pacific Pte Ltd 1 Sci Pk Rd 02-01-06 Capricorn Singapore Sci Pk 2 Singapore 117528 Singapore;

    ASTAR Bioproc Technol Inst Antibody Discovery Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

    ASTAR Bioproc Technol Inst Analyt Grp Singapore 138668 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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