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由于缺乏Dβ2-Jβ2基因簇,T细胞库中针对髓鞘碱性蛋白的漏洞:对T细胞受体识别和自身免疫的影响。

Holes in the T cell repertoire to myelin basic protein owing to the absence of the D beta 2-J beta 2 gene cluster: implications for T cell receptor recognition and autoimmunity.

作者信息

Kumar V, Sercarz E

机构信息

Department of Microbiology and Molecular Genetics, University of California, Los Angeles 90024-1489.

出版信息

J Exp Med. 1994 May 1;179(5):1637-43. doi: 10.1084/jem.179.5.1637.

Abstract

Models of T cell recognition suggest that amino acid residues in the CDR3 region of the T cell receptor (TCR) alpha or beta chain directly contact the major histocompatibility complex-bound peptide, and thus are crucial for providing peptide specificity. T cells derived from B10.PL or PL/J mice of H-2u haplotype, use only D beta 2 and J beta 2 gene segments in the recognition of the dominant determinant, Ac1-9/Au, of myelin basic protein (MBP). New Zealand White (NZW) mice, with identical class II H-2u genes (I-A and I-E), carry an 8.8-kb deletion in their TCR beta chain locus encompassing D beta 2 and J beta 2 gene segments. How does this deletion of the crucial D beta 2-J beta 2 region in NZW mice influence specific responses to Ac1-9/Au as well as to other known Au or Eu determinants of MBP? We found that these mice respond very poorly to the dominant Ac1-9/Au and to the subdominant 31-50/Eu determinant in in vitro proliferation assays as well as in their in vivo capacity to induce experimental autoimmune encephalomyelitis. This loss of response is apparently owing to the absence of high avidity TCRs with essential CDR3 residues contributed by D beta 2 or J beta 2 gene segments. These data reveal constraints in the recognition of certain antigenic structures, and further support a TCR-recognition model in which CDR3 residues of the TCR alpha and beta chains constitute the antigenic peptide-binding sites on the TCR molecule. Implications for autoimmune manifestations contributed by NZW genes in (NZB x NZW)F1 disease are also discussed.

摘要

T细胞识别模型表明,T细胞受体(TCR)α或β链的互补决定区3(CDR3)中的氨基酸残基直接接触主要组织相容性复合体结合的肽,因此对于提供肽特异性至关重要。源自H-2u单倍型的B10.PL或PL/J小鼠的T细胞,在识别髓鞘碱性蛋白(MBP)的主要决定簇Ac1-9/Au时仅使用Dβ2和Jβ2基因片段。具有相同II类H-2u基因(I-A和I-E)的新西兰白兔(NZW)小鼠,其TCRβ链基因座中有一个8.8kb的缺失,该缺失涵盖Dβ2和Jβ2基因片段。NZW小鼠中关键的Dβ2-Jβ2区域的这种缺失如何影响对Ac1-9/Au以及MBP其他已知的Au或Eu决定簇的特异性反应?我们发现,在体外增殖试验以及它们诱导实验性自身免疫性脑脊髓炎的体内能力方面,这些小鼠对主要的Ac1-9/Au和次要的31-50/Eu决定簇反应非常差。这种反应丧失显然是由于缺乏由Dβ2或Jβ2基因片段贡献必需CDR3残基的高亲和力TCR。这些数据揭示了对某些抗原结构识别的限制,并进一步支持了一种TCR识别模型,其中TCRα和β链的CDR3残基构成TCR分子上的抗原肽结合位点。还讨论了NZW基因在(NZB×NZW)F1疾病中对自身免疫表现的影响。

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