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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Resistance to adjuvant arthritis is due to protective antibodies against heat shock protein surface epitopes and the induction of IL-10 secretion.
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Resistance to adjuvant arthritis is due to protective antibodies against heat shock protein surface epitopes and the induction of IL-10 secretion.

机译:对佐剂性关节炎的抵抗力归因于针对热休克蛋白表面表位的保护性抗体和诱导的IL-10分泌。

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摘要

Adjuvant arthritis (AA) is an experimental model of autoimmune arthritis that can be induced in susceptible strains of rats such as inbred Lewis upon immunization with CFA. AA cannot be induced in resistant strains like Brown-Norway or in Lewis rats after recovery from arthritis. We have previously shown that resistance to AA is due to the presence of natural as well as acquired anti-heat shock protein (HSP) Abs. In this work we have studied the fine specificity of the protective anti-HSP Abs by analysis of their interaction with a panel of overlapping peptides covering the whole HSP molecule. We found that arthritis-susceptible rats lack Abs to a small number of defined epitopes of the mycobacterial HSP65. These Abs are found naturally in resistant strains and are acquired by Lewis rats after recovery from the disease. Active vaccination of Lewis rats with the protective epitopes as well as passive vaccination with these Abs induced suppression of arthritis. Incubation of murine and human mononuclear cells with the protective Abs induced secretion of IL-10. Analysis of the primary and tertiary structure of the whole Mycobacterium tuberculosis HSP65 molecule indicated that the protective epitopes are B cell epitopes with nonconserved amino acid sequences found on the outer surface of the molecule. We conclude that HSP, the Ag that contains the pathogenic T cell epitopes in AA, also contains protective B cell epitopes exposed on its surface, and that natural and acquired resistance to AA is associated with the ability to respond to these epitopes.
机译:佐剂性关节炎(AA)是一种自身免疫性关节炎的实验模型,可通过CFA免疫在易感大鼠品系(如近交Lewis)中诱发。从关节炎恢复后,不能在抗性菌株如Brown-Norway或Lewis大鼠中诱导AA。先前我们已经表明,对AA的抗性是由于天然以及获得性抗热休克蛋白(HSP)Abs的存在引起的。在这项工作中,我们通过分析保护性抗HSP Abs与覆盖整个HSP分子的一组重叠肽的相互作用来研究其特异性。我们发现对关节炎敏感的大鼠对分枝杆菌HSP65的少数定义表位缺乏抗体。这些抗体在抗性菌株中天然存在,从疾病中恢复后由Lewis大鼠获得。对具有保护性表位的Lewis大鼠进行主动接种,以及对这些Abs进行被动接种可诱导关节炎的抑制。用保护性Abs孵育鼠和人单核细胞可诱导IL-10分泌。对整个结核分枝杆菌HSP65分子的一级和三级结构的分析表明,保护性表位是B细胞表位,在该分子的外表面上具有非保守的氨基酸序列。我们得出的结论是,HSP,即在AA中包含致病性T细胞抗原决定簇的Ag,也包含暴露在其表面的保护性B细胞抗原决定簇,并且对AA的天然抗性和获得性抗性与对这些抗原决定簇的反应能力有关。

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