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疾病相关表位的主要组织相容性复合体结合肽类似物对疾病的抑制作用:不止于单纯阻断。

Disease inhibition by major histocompatibility complex binding peptide analogues of disease-associated epitopes: more than blocking alone.

作者信息

Wauben M H, Boog C J, van der Zee R, Joosten I, Schlief A, van Eden W

机构信息

Institute of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, University of Utrecht, The Netherlands.

出版信息

J Exp Med. 1992 Sep 1;176(3):667-77. doi: 10.1084/jem.176.3.667.

Abstract

Peptide analogues of disease-associated epitopes were studied for inhibition of experimental allergic encephalomyelitis (EAE) and adjuvant arthritis (AA) in Lewis rats. EAE- and AA-associated analogues were selected as competitors because of their in vitro inhibitory activity on proliferation of encephalitogenic and arthritogenic T cells. Although the EAE-associated competitor had a superior major histocompatibility complex (MHC) binding affinity, the AA-associated competitor was a better inhibitor of the in vitro proliferation of arthritogenic T cells. Furthermore, although in vivo EAE was inhibited by both competitors, AA was only inhibited by the AA-associated competitor. Remarkably, in contrast to what was expected of a regular MHC competitor peptide, the AA-associated peptide analogue also prevented AA upon immunization before disease induction and appeared to induce T cell responses that crossreacted with the original disease-associated epitope. Therefore, it is concluded that antigen-specific regulatory mechanisms were involved in synergy with MHC competition. The integration of both qualities into a single "competitor-modulator" analogue peptide may lead to the development of novel, more effective, disease-specific immunomodulatory peptides.

摘要

研究了疾病相关表位的肽类似物对Lewis大鼠实验性变态反应性脑脊髓炎(EAE)和佐剂性关节炎(AA)的抑制作用。选择与EAE和AA相关的类似物作为竞争者,因为它们对致脑炎性和致关节炎性T细胞的增殖具有体外抑制活性。尽管与EAE相关的竞争者具有更高的主要组织相容性复合体(MHC)结合亲和力,但与AA相关的竞争者对致关节炎性T细胞的体外增殖是更好的抑制剂。此外,尽管两种竞争者都能在体内抑制EAE,但AA仅被与AA相关的竞争者抑制。值得注意的是,与常规MHC竞争肽的预期相反,与AA相关的肽类似物在疾病诱导前免疫时也能预防AA,并且似乎能诱导与原始疾病相关表位发生交叉反应的T细胞反应。因此,得出结论,抗原特异性调节机制与MHC竞争协同作用。将这两种特性整合到单个“竞争调节剂”类似物肽中可能会导致开发出新型、更有效的疾病特异性免疫调节肽。

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