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I型主要组织相容性复合体(I-Ad)限制的T细胞对流感血凝素的识别。合成肽鉴定出多个与HA1亚基抗体结合区域相对应的表位。

I-Ad restricted T cell recognition of influenza hemagglutinin. Synthetic peptides identify multiple epitopes corresponding to antibody-binding regions of the HA1 subunit.

作者信息

Barnett B C, Burt D S, Graham C M, Warren A P, Skehel J J, Thomas D B

机构信息

National Institute for Medical Research, London, England.

出版信息

J Immunol. 1989 Oct 15;143(8):2663-9.

PMID:2477451
Abstract

In a recent study, we reported extensive diversity in the Iak-restricted T cell repertoire for the hemagglutinin molecule (HA) of influenza A viruses (H3 subtype). Synthetic peptides identified six nonoverlapping epitopes on the HA1 subunit, and CD4+ T cell clones, specific for these regions, discriminated between natural variant viruses that had accumulated amino acid substitutions during antigenic drift. Here, we demonstrate similar specificity and diversity for the Iad haplotype and have identified multiple T cell epitopes within the sequences HA1 56-76, 71-91, 81-97, 177-199, 186-205, and 206-227. These also include recognition sites for neutralizing antibodies and correlations can be made between antigenic drift substitutions in H3 subtype viruses and the specificity of individual CD4+ clones for mutant HA. Moreover, these peptides appear not to exhibit structural homology and fail to compete for Ag presentation, indicating heterogeneity in peptide-Ia interaction. To explain the observation that CD4+ T cells, from two major haplotypes, recognize antibody binding regions of the HA molecule, we propose that surface Ig receptors of the Ag-specific B memory cell exert a direct effect on the processing of HA peptides and subsequent selection of the class II-restricted T cell memory repertoire after natural infection.

摘要

在最近的一项研究中,我们报道了甲型流感病毒(H3亚型)血凝素分子(HA)的Iak限制性T细胞库具有广泛的多样性。合成肽在HA1亚基上鉴定出六个不重叠的表位,对这些区域具有特异性的CD4+T细胞克隆能够区分在抗原漂移过程中积累了氨基酸替换的天然变异病毒。在此,我们证明了Iad单倍型具有类似的特异性和多样性,并在HA1 56-76、71-91、81-97、177-199、186-205和206-227序列中鉴定出多个T细胞表位。这些表位还包括中和抗体的识别位点,并且可以在H3亚型病毒的抗原漂移替换与单个CD4+克隆对突变HA的特异性之间建立关联。此外,这些肽似乎不表现出结构同源性,也不能竞争抗原呈递,这表明肽与Ia相互作用存在异质性。为了解释来自两种主要单倍型的CD4+T细胞识别HA分子抗体结合区域这一现象,我们提出,抗原特异性B记忆细胞的表面Ig受体对HA肽的加工以及自然感染后II类限制性T细胞记忆库的后续选择具有直接影响。

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