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用于研究与自身免疫性关节炎相关的 II 类 MHC 结合和 T 细胞反应的糖肽设计。

Design of glycopeptides used to investigate class II MHC binding and T-cell responses associated with autoimmune arthritis.

机构信息

Department of Chemistry, Umeå University, Umeå, Sweden.

出版信息

PLoS One. 2011 Mar 15;6(3):e17881. doi: 10.1371/journal.pone.0017881.

Abstract

The glycopeptide fragment CII259-273 from type II collagen (CII) binds to the murine A(q) and human DR4 class II Major Histocompatibility Complex (MHC II) proteins, which are associated with development of murine collagen-induced arthritis (CIA) and rheumatoid arthritis (RA), respectively. It has been shown that CII259-273 can be used in therapeutic vaccination of CIA. This glycopeptide also elicits responses from T-cells obtained from RA patients, which indicates that it has an important role in RA as well. We now present a methodology for studies of (glyco)peptide-receptor interactions based on a combination of structure-based virtual screening, ligand-based statistical molecular design and biological evaluations. This methodology included the design of a CII259-273 glycopeptide library in which two anchor positions crucial for binding in pockets of A(q) and DR4 were varied. Synthesis and biological evaluation of the designed glycopeptides provided novel structure-activity relationship (SAR) understanding of binding to A(q) and DR4. Glycopeptides that retained high affinities for these MHC II proteins and induced strong responses in panels of T-cell hybridomas were also identified. An analysis of all the responses revealed groups of glycopeptides with different response patterns that are of high interest for vaccination studies in CIA. Moreover, the SAR understanding obtained in this study provides a platform for the design of second-generation glycopeptides with tuned MHC affinities and T-cell responses.

摘要

来自 II 型胶原蛋白 (CII) 的糖肽片段 CII259-273 与小鼠 A(q) 和人类 DR4 类 II 主要组织相容性复合物 (MHC II) 蛋白结合,分别与小鼠胶原诱导性关节炎 (CIA) 和类风湿性关节炎 (RA) 的发展相关。已经表明,CII259-273 可用于 CIA 的治疗性疫苗接种。该糖肽还能从 RA 患者的 T 细胞中引发反应,这表明它在 RA 中也具有重要作用。我们现在提出了一种基于结构的虚拟筛选、配体基于统计分子设计和生物学评估相结合的研究 (糖)肽-受体相互作用的方法。该方法包括设计 CII259-273 糖肽文库,其中两个关键的锚定位置在 A(q)和 DR4 的口袋中结合,位置可变。设计的糖肽的合成和生物学评估提供了与 A(q)和 DR4 结合的新的结构活性关系 (SAR) 理解。还鉴定了保留对这些 MHC II 蛋白高亲和力并在 T 细胞杂交瘤面板中诱导强烈反应的糖肽。对所有反应的分析揭示了具有不同反应模式的糖肽组,这些糖肽组对于 CIA 中的疫苗接种研究非常有意义。此外,本研究中获得的 SAR 理解为设计具有调谐 MHC 亲和力和 T 细胞反应的第二代糖肽提供了一个平台。

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