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肽段长度强烈影响 tapasin 对天然 HLA-A 和 -B 等位基因变体的促进作用,这依赖于稳定性,并能区分密切相关的等位基因变体。

Tapasin facilitation of natural HLA-A and -B allomorphs is strongly influenced by peptide length, depends on stability, and separates closely related allomorphs.

机构信息

Department of Experimental Medical Science, Immunology Section, Lund University, 221 84 Lund, Sweden.

出版信息

J Immunol. 2013 Oct 1;191(7):3939-47. doi: 10.4049/jimmunol.1201741. Epub 2013 Aug 26.

Abstract

Despite an abundance of peptides inside a cell, only a small fraction is ultimately presented by HLA-I on the cell surface. The presented peptides have HLA-I allomorph-specific motifs and are restricted in length. So far, detailed length studies have been limited to few allomorphs. Peptide-HLA-I (pHLA-I) complexes of different allomorphs are qualitatively and quantitatively influenced by tapasin to different degrees, but again, its effect has only been investigated for a small number of HLA-I allomorphs. Although both peptide length and tapasin dependence are known to be important for HLA-I peptide presentation, the relationship between them has never been studied. In this study, we used random peptide libraries from 7- to 13-mers and studied binding in the presence and absence of a recombinant truncated form of tapasin. The data show that HLA-I allomorphs are differentially affected by tapasin, different lengths of peptides generated different amounts of pHLA-I complexes, and HLA-A allomorphs are generally less restricted than HLA-B allomorphs to peptides of the classical length of 8-10 aa. We also demonstrate that tapasin facilitation varies for different peptide lengths, and that the correlation between high degree of tapasin facilitation and low stability is valid for different random peptide mixes of specific lengths. In conclusion, these data show that tapasin has specificity for the combination of peptide length and HLA-I allomorph, and suggest that tapasin promotes formation of pHLA-I complexes with high on and off rates, an important intermediary step in the HLA-I maturation process.

摘要

尽管细胞内存在大量的肽,但最终只有一小部分被 HLA-I 呈现在细胞表面。呈递的肽具有 HLA-I 同种异型特异性基序,并且长度受限。到目前为止,详细的长度研究仅限于少数同种异型。不同同种异型的肽-HLA-I (pHLA-I) 复合物在质和量上受到 tapasin 的不同程度的影响,但同样,它的作用仅在少数 HLA-I 同种异型中进行了研究。尽管肽长度和 tapasin 依赖性都已知是 HLA-I 肽呈递的重要因素,但它们之间的关系从未被研究过。在这项研究中,我们使用了 7-13 个氨基酸残基的随机肽文库,并在存在和不存在重组截短形式的 tapasin 的情况下研究了结合情况。数据表明,tapasin 对 HLA-I 同种异型的影响不同,不同长度的肽产生不同数量的 pHLA-I 复合物,并且 HLA-A 同种异型通常比 HLA-B 同种异型对经典长度为 8-10 个氨基酸的肽的限制更小。我们还证明,tapasin 促进作用因肽长度而异,并且高程度的 tapasin 促进作用与低稳定性之间的相关性对于特定长度的不同随机肽混合物都是有效的。总之,这些数据表明 tapasin 对肽长度和 HLA-I 同种异型的组合具有特异性,并表明 tapasin 促进了具有高 ON 和 OFF 率的 pHLA-I 复合物的形成,这是 HLA-I 成熟过程中的一个重要中间步骤。

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