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在SJL和Biozzi AB/H小鼠中诱导实验性变应性脑脊髓炎的髓鞘少突胶质细胞糖蛋白表位的鉴定

Identification of epitopes of myelin oligodendrocyte glycoprotein for the induction of experimental allergic encephalomyelitis in SJL and Biozzi AB/H mice.

作者信息

Amor S, Groome N, Linington C, Morris M M, Dornmair K, Gardinier M V, Matthieu J M, Baker D

机构信息

Department of Immunology, Rayne Institute, United Medical School, Guy's Hospital London, United Kingdom.

出版信息

J Immunol. 1994 Nov 15;153(10):4349-56.

PMID:7525700
Abstract

A recombinant protein corresponding to the Ig-like domain of myelin oligodendrocyte glycoprotein (MOG) and synthetic 15-mer peptides of the whole MOG molecule with eight amino acid overlaps were screened for their ability to induce experimental allergic encephalomyelitis (EAE) in Biozzi AB/H (H-2dq1) and SJL (H-2S) mice. Clinical and histologic evidence of EAE developed after sensitization with the recombinant MOG protein in both AB/H and SJL mice. In AB/H mice at least three MOG epitopes within residues 1-22, 43-57, and 134-148 induced clinical and histologic EAE, whereas only the sequence 92-106 was encephalitogenic in SJL mice. Histologically, the inflammatory response in the central nervous system consisted of perivascular accumulations of CD5+ T cells and F4/80+ macrophage/microglia cells equally distributed in the brain and spinal cord. The subpial/meningeal infiltration, characteristic of mouse EAE induced with spinal cord homogenate, was only observed in cases of severe clinical disease in SJL mice in which the cellular infiltrates predominated in the spinal cord. In spite of the presence of histologic lesions in AB/H mice immunized with MOG, clinical disease either rapidly resolved or was clinically silent. In contrast to immunization of SJL mice with recombinant MOG, sensitization to MOG 92-106 induced severe clinical paralysis. After recovery these animals relapsed and exhibited demyelinated lesions. This study is the first to describe encephalitogenic epitopes of MOG that induce both clinical and histologic signs of EAE in mice. These and previous findings implicating MOG as a target Ag for Ab-mediated attack in EAE suggest that such autoreactivity to MOG may be significant in the development of human demyelinating diseases such as multiple sclerosis.

摘要

筛选了一种与髓鞘少突胶质细胞糖蛋白(MOG)的免疫球蛋白样结构域相对应的重组蛋白以及整个MOG分子的合成15肽(具有8个氨基酸重叠),以研究它们在Biozzi AB/H(H-2dq1)和SJL(H-2S)小鼠中诱导实验性自身免疫性脑脊髓炎(EAE)的能力。用重组MOG蛋白致敏后,AB/H和SJL小鼠均出现了EAE的临床和组织学证据。在AB/H小鼠中,1-22、43-57和134-148位残基内至少有三个MOG表位可诱导临床和组织学EAE,而在SJL小鼠中只有92-106序列具有致脑炎性。组织学上,中枢神经系统的炎症反应由CD5 + T细胞和F4/80 +巨噬细胞/小胶质细胞的血管周围聚集组成,这些细胞在脑和脊髓中分布均匀。软膜/脑膜浸润是脊髓匀浆诱导的小鼠EAE的特征,仅在SJL小鼠严重临床疾病病例中观察到,其中细胞浸润在脊髓中占主导。尽管用MOG免疫的AB/H小鼠存在组织学病变,但临床疾病要么迅速缓解,要么无临床症状。与用重组MOG免疫SJL小鼠不同,对MOG 92-106致敏会导致严重的临床麻痹。恢复后,这些动物复发并出现脱髓鞘病变。本研究首次描述了MOG的致脑炎性表位,其可在小鼠中诱导EAE的临床和组织学体征。这些以及先前将MOG作为EAE中抗体介导攻击的靶抗原的研究结果表明,这种对MOG的自身反应性在人类脱髓鞘疾病如多发性硬化症的发展中可能具有重要意义。

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