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Chemistry and biology of antigen presentation in celiac sprue.

机译:腹腔灌浆中抗原呈递的化学和生物学。

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摘要

Built on the previous discovery of the 33-mer gluten peptide and the revelation of the crystal structure of HLA-DQ2, this dissertation aims to explore the new avenue of blocking HLA-DQ2 mediated presentation of antigenic gluten peptides as a therapeutic option in celiac spure. First we conducted equilibrium and kinetic analysis of the binding interaction between this 33-mer peptide and recombinant DQ2, and concluded that the remarkable antigenicity of the deamidated 33-mer peptide is primarily due to its unusually efficient ability to displace existing ligands in the HLA-DQ2 binding pocket. Secondly, an N-methylation scan in conjunction with proline-to-norvaline displacement scan allowed us to explore the unusual main chain hydrogen bonding interactions in the binding of gluten peptides to HLA-DQ2. Thirdly , a systematical investigation of the structure-activity-relationship of the binding of the 33-mer peptide to DQ2 led to the discovery of a 20-mer peptide as the core binding sequence. Chemical modifications of this lead peptide yielded blocking agents which were able to attenuate the proliferation of disease-specific T cell lines in response to gluten antigens using fixed antigen presenting B cells. Next, in an attempt to optimize the effect of the blockers, we systematically synthesized a series of cyclic peptides and dimeric peptides and explored their binding affinities to HLA-DQ2 as well as their capacities to block DQ2-mediated antigen presentation. Furthermore, by quantifying the amount of DQ2 proteins expressed on the surface of DQ2+ B cells and the amount of antigen presented per cell at saturation by chemical methods, we observed a very low occupancy percentage of DQ2 on the surface of B cells even by high affinity antigens. Lastly, we explored the possibility of synthesizing reversible covalent antigen/antagonist to DQ2 in order to gain increased surface presentation hence the better inhibitory effect. Some aldehyde-containing peptide analogues can form covalent linkage with Lysbeta71 of DQ2. Given the promising effect of some DQ2 blocking agents, our research provides a foundation for further research toward a therapeutic option to celiac sprue.
机译:基于33-mer麸质肽的先前发现以及HLA-DQ2的晶体结构的揭示,本论文旨在探索阻断HLA-DQ2介导的抗原性麸质肽作为乳糜泻治疗选择的新途径。 。首先,我们对这种33-mer肽与重组DQ2之间的结合相互作用进行了平衡和动力学分析,并得出结论:脱酰胺化的33-mer肽的显着抗原性主要是由于其置换HLA- DQ2装订袋。其次,N-甲基化扫描结合脯氨酸到正缬氨酸的置换扫描使我们能够探索面筋肽与HLA-DQ2结合中异常的主链氢键相互作用。第三,对33聚体肽与DQ2结合的结构-活性-关系的系统研究导致发现了20聚体肽作为核心结合序列。使用固定的呈递抗原的B细胞,对该前导肽的化学修饰产生阻断剂,该阻断剂能够响应于麸质抗原而减弱疾病特异性T细胞系的增殖。接下来,为了优化阻断剂的作用,我们系统地合成了一系列环状肽和二聚体肽,并探讨了它们与HLA-DQ2的结合亲和力以及它们阻断DQ2介导的抗原呈递的能力。此外,通过化学方法对DQ2 + B细胞表面表达的DQ2蛋白的数量和每个细胞饱和表达的抗原数量进行定量,即使亲和力很高,我们也观察到DQ2在B细胞表面的占有率非常低。抗原。最后,我们探索了将可逆共价抗原/拮抗剂合成为DQ2的可能性,以增加表面呈递率,从而获得更好的抑制效果。一些含醛的肽类似物可以与DQ2的Lysbeta71形成共价键。考虑到某些DQ2阻断剂的有希望的作用,我们的研究为进一步研究乳糜泻的治疗选择奠定了基础。

著录项

  • 作者

    Xia, Jiang.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Chemistry Organic.;Health Sciences Immunology.;Health Sciences Pathology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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