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一种构象受限的源自MHC II类分子I-Ag7的肽可保护NOD小鼠不发生糖尿病。

A conformationally-constrained MHC class II I-Ag7-derived peptide protects NOD mice from the development of diabetes.

作者信息

Dunsavage M B, O'Leary C J, Baumgart T D, Solvason N, Howard M, Lafferty K, Deshpande S, Reich E P

机构信息

Anergen Inc., 301 Penobscot Drive, Redwood City California, 94063, USA.

出版信息

J Autoimmun. 1999 Jun;12(4):233-42. doi: 10.1006/jaut.1999.0277.

Abstract

Allele-specific peptide vaccination against disease-associated MHC class II molecules is a promising new strategy for modulating self-antigen presentation to autoreactive T cells in autoimmune diseases. To evaluate the potential of this approach for treatment of insulin-dependent diabetes mellitus (IDDM), we have designed a cyclic peptide vaccine, DiavaX, from the third hypervariable region of the beta-chain of the NOD mouse MHC class II I-Ag7. NOD mice were treated at 5 and 9 weeks of age with 100 microg DiavaX emulsified in alum, a control peptide in alum, or alum alone. At the end of the study, 87% of alum treated mice had developed diabetes, compared with only 28% of DiavaX-treated mice. None of the control peptides, including a linear I-Ag7, a scrambled cyclic I-Ag7, or an analogous cyclic I-Aspeptide, reduced the incidence of diabetes, demonstrating that the protective effect of DiavaX is conformationally dependent and both allele- and sequence-specific. DiavaX treatment did not cause any general immune suppression, but did induce peptide-specific antibodies and memory T cells. DiavaX-induced protection from diabetes was associated with the maintenance of a non-destructive islet-associated autoimmune response. These data indicate that a conformationally constrained peptide from the disease-associated MHC represents a potential vaccine candidate for the prevention of clinical IDDM.

摘要

针对疾病相关的MHC II类分子进行等位基因特异性肽疫苗接种,是一种很有前景的新策略,可用于调节自身抗原向自身免疫性疾病中自身反应性T细胞的呈递。为了评估这种方法治疗胰岛素依赖型糖尿病(IDDM)的潜力,我们从NOD小鼠MHC II类分子I-Ag7的β链第三高变区设计了一种环肽疫苗DiavaX。在5周龄和9周龄时,用100μg乳化于明矾中的DiavaX、乳化于明矾中的对照肽或仅用明矾处理NOD小鼠。在研究结束时,87%的明矾处理小鼠患了糖尿病,而DiavaX处理的小鼠只有28%患病。包括线性I-Ag7、乱序环I-Ag7或类似环I-A肽在内的对照肽均未降低糖尿病发病率,这表明DiavaX的保护作用依赖于构象,且具有等位基因和序列特异性。DiavaX处理未引起任何全身性免疫抑制,但确实诱导了肽特异性抗体和记忆T细胞。DiavaX诱导的对糖尿病的保护作用与维持非破坏性的胰岛相关自身免疫反应有关。这些数据表明,来自疾病相关MHC的构象受限肽是预防临床IDDM的潜在疫苗候选物。

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