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3-O-硫酸化寡糖结构可被抗硫酸乙酰肝素抗体HS4C3识别。

3-O-sulfated oligosaccharide structures are recognized by anti-heparan sulfate antibody HS4C3.

作者信息

Ten Dam Gerdy B, Kurup Sindhulakshmi, van de Westerlo Els M A, Versteeg Elly M M, Lindahl Ulf, Spillmann Dorothe, van Kuppevelt Toin H

机构信息

Department of Biochemistry, Nijmegen Center for Molecular Life Sciences, Radboud University Nijmegen Medical Center, 6500 HB Nijmegen, The Netherlands.

出版信息

J Biol Chem. 2006 Feb 24;281(8):4654-62. doi: 10.1074/jbc.M506357200. Epub 2005 Dec 22.

Abstract

Antibodies against heparan sulfate (HS) are useful tools to study the structural diversity of HS. They demonstrate the large sequential variation within HS and show the distribution of HS oligosaccharide sequences within their natural environment. We analyzed the distribution and the structural characteristics of the oligosaccharide epitope recognized by anti-HS antibody HS4C3. Biosynthetic and synthetic heparin-related oligosaccharide libraries were used in affinity chromatography, immunoprecipitation, and enzyme-linked immunosorbent assay to identify this epitope as a 3-O-sulfated motif with antithrombin binding capacity. The antibody binds weakly to any N-sulfated, 2-O- and 6-O-sulfated hexa- to octasaccharide fragment but strongly to the corresponding oligosaccharide when there is a 3-O-sulfated glucosamine residue present in the sequence. This difference was highlighted by affinity interaction and immunohistochemistry at salt concentrations from 500 mm. At physiological salt conditions the antibody strongly recognized basal lamina of epithelia and endothelia. At 500 mm salt conditions, when 3-O sulfation is required for binding, antibody recognition was more restricted and selective. Antibody HS4C3 bound similar tissue structures as antithrombin in rat kidney. Furthermore, antithrombin and antibody HS4C3 could compete with one another for binding to heparin. Antibody HS4C3 was also able to inhibit the anti-coagulant activities of heparin and Arixtra as demonstrated using the activated partial thromboplastin time clotting and the anti-factor Xa assays. In summary, antibody HS4C3 selectively detects 3-O-sulfated HS structures and interferes with the coagulation activities of heparin by association with the anti-thrombin binding pentasaccharide sequence.

摘要

抗硫酸乙酰肝素(HS)抗体是研究HS结构多样性的有用工具。它们展示了HS内巨大的序列变异,并显示了HS寡糖序列在其天然环境中的分布。我们分析了抗HS抗体HS4C3识别的寡糖表位的分布和结构特征。利用生物合成和合成的肝素相关寡糖文库进行亲和色谱、免疫沉淀和酶联免疫吸附测定,以确定该表位为具有抗凝血酶结合能力的3-O-硫酸化基序。该抗体与任何N-硫酸化、2-O-和6-O-硫酸化的六糖至八糖片段结合较弱,但当序列中存在3-O-硫酸化的葡糖胺残基时,与相应的寡糖结合较强。在500 mM的盐浓度下,亲和相互作用和免疫组织化学突出了这种差异。在生理盐条件下,该抗体强烈识别上皮和内皮的基膜。在500 mM盐条件下,结合需要3-O硫酸化时,抗体识别更具局限性和选择性。抗体HS4C3在大鼠肾脏中与抗凝血酶结合的组织结构相似。此外,抗凝血酶和抗体HS4C3可相互竞争与肝素的结合。使用活化部分凝血活酶时间凝血和抗因子Xa测定法证明,抗体HS4C3还能够抑制肝素和阿哌沙班的抗凝活性。总之,抗体HS4C3选择性地检测3-O-硫酸化的HS结构,并通过与抗凝血酶结合的五糖序列结合来干扰肝素的凝血活性。

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