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首页> 外文期刊>Chemistry: A European journal >Induction of Antibodies Directed Against Branched Core O-Mannosyl Glycopeptides-Selectivity Complimentary to the ConA Lectin
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Induction of Antibodies Directed Against Branched Core O-Mannosyl Glycopeptides-Selectivity Complimentary to the ConA Lectin

机译:诱导针对与康娜凝集素互补的分支核心O-甘露糖基糖肽 - 选择性的抗体

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摘要

Mammalian protein O-mannosylation, initiated by attachment of a-mannopyranose to Ser or Thr residues, comprise a group of post-translational modifications (PTMs) involved in muscle and brain development. Recent advances in glycoproteomics methodology and the "SimpleCell" strategy have enabled rapid identification of glycoproteins and specific glycosylation sites. Despite the enormous progress made, the biological impact of the mammalian O-mannosyl glycoproteome remains largely unknown to date. Tools are still needed to investigate the structure, role, and abundance of O-mannosyl glycans. Although O-mannosyl branching has been shown to be of relevance in integrin-dependent cell migration, and also plays a role in demyelinating diseases, such as multiple sclerosis, a broader understanding of the biological roles of branched O-mannosyl glycans is lacking in part due to the paucity of detection tools. In this work, a glycopeptide vaccine construct was synthesized and used to generate antibodies against branched O-mannosyl glycans. Glycopeptide microarray screening revealed high selectivity of the induced antibodies for branched glycan core structures presented on different peptide backbones, with no cross-reactivity observed with related linear glycans. For comparison, microarray screening of the mannose-binding lectin concanavalin A (ConA), which is commonly used in glycoproteomics workflows to enrich tryptic O-mannosyl peptides, showed that the ConA lectin did not recognize branched O-mannosyl glycans. The binding preference of ConA for short linear O-mannosyl glycans was rationalized in terms of molecular structure using crystallographic data augmented by molecular modeling. The contrast between the ConA binding specificity and that of the new antibodies indicates a novel role for the antibodies in studies of protein O-mannosylation.
机译:通过将α-甘露酸酯连接到SER或THR残基引发的哺乳动物蛋白质O-甘露基化包含肌肉和脑发育中的一组翻译后修饰(PTM)。糖类蛋白酶方法的最新进展和“SimpleCell”策略使糖蛋白和特定糖基化位点的快速鉴定。尽管取得了巨大的进展,但哺乳动物O-甘露糖基的生物学撞击迄今为止仍然很大程度上。仍然需要工具来研究O-甘露糖基聚糖的结构,作用和丰度。虽然O-甘露糖基分枝在整联蛋白依赖性细胞迁移中具有相关性,但在脱髓鞘疾病中也发挥作用,例如多发性硬化,对分枝O-甘露糖基聚合物的生物作用缺乏更广泛的理解由于检测工具的缺乏。在这项工作中,合成糖肽疫苗构建体并用于产生针对支链O-甘露糖基聚合物的抗体。糖肽微阵列筛选揭示了在不同肽骨干上呈现的支链甘油核心结构的诱导抗体的高选择性,用相关的线性聚糖观察到没有交叉反应性。为了比较,甘露糖结合凝集素的微阵列筛选,其通常用于糖蛋白的工作流程以富集胰蛋白酶o-甘露糖基肽,表明康娜凝集素不识别支链O-甘露糖基聚合物。 Cona对于短线性O-甘露糖基聚合物的结合偏好于使用分子建模增强的晶体数据的分子结构而合理化。 Cona结合特异性与新抗体之间的对比表明蛋白质O-甘露糖基化研究中的抗体的新作用。

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  • 来源
    《Chemistry: A European journal》 |2017年第14期|共8页
  • 作者单位

    Gesellschaft zur F?rderung der Analytischen Wissenschaften e.V. ISAS-Leibniz Institute for Analytical Sciences Otto-Hahn-Str. 6b 44227 Dortmund (Germany);

    Complex Carbohydrate Research Center University of Georgia 315 Riverbend Rd Athens GA 30602 (USA);

    Gesellschaft zur F?rderung der Analytischen Wissenschaften e.V. ISAS-Leibniz Institute for Analytical Sciences Otto-Hahn-Str. 6b 44227 Dortmund (Germany);

    Centre for Organismal Studies (COS) Cell Chemistry Heidelberg University Im Neuenheimer Feld 360 69120 Heidelberg (Germany);

    Complex Carbohydrate Research Center University of Georgia 315 Riverbend Rd Athens GA 30602 (USA);

    Gesellschaft zur F?rderung der Analytischen Wissenschaften e.V. ISAS-Leibniz Institute for Analytical Sciences Otto-Hahn-Str. 6b 44227 Dortmund (Germany);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学;
  • 关键词

    antibodies; carbohydrates; glycopeptides; lectins; vaccines;

    机译:抗体;碳水化合物;糖肽;凝集素;疫苗;

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