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鉴定主要组织相容性复合体(MHC)分子内对于与腺病毒蛋白E3/19K相互作用至关重要的氨基酸。

Identification of amino acids within the MHC molecule important for the interaction with the adenovirus protein E3/19K.

作者信息

Feuerbach D, Etteldorf S, Ebenau-Jehle C, Abastado J P, Madden D, Burgert H G

机构信息

Hans Spemann Laboratory, Max Planck Institute for Immunobiology, Freiburg, Germany.

出版信息

J Immunol. 1994 Aug 15;153(4):1626-36.

PMID:8046235
Abstract

The E3/19K protein of human adenovirus type 2 binds to class I MHC Ags thereby interfering with their cell surface expression and Ag presentation function. Currently, it is unclear exactly which structure of MHC molecules is recognized by the E3/19K protein. We have previously demonstrated that the murine H-2Kd Ag is able to associate with E3/19K, whereas the allelic H-2Kk molecule is not. By using exon shuffling between Kd and Kk molecules, the alpha 1 and alpha 2 domains of MHC class I molecules were identified as essential structures for binding the viral protein. In this report, we have examined the contribution of individual amino acids within the alpha 2 domain of MHC for binding E3/19K. First, we show that within this domain the alpha-helical part is most important for the interaction with E3/19K. By using site-directed mutagenesis, Kd-specific amino acids were introduced into the alpha-helix of the alpha 2 domain of Kk. By using the expression of mutagenized proteins in E3/19K+ cells, we have identified Tyr 156 and Leu 180 as being essential for the association with the E3/19K protein. In addition, Kd residue Glu 163 seems to contribute to the complex formation. Furthermore, analysis of a panel of Kd/Dd recombinants indicates that a similar region in the Dd molecule, namely, the C-terminal half of the alpha 2 domain, affects binding to E3/19K. Combining these results with Ab binding data, we present two alternative models of how the adenovirus protein may bind to the alpha 1 and alpha 2 domains.

摘要

人2型腺病毒的E3/19K蛋白与I类MHC抗原结合,从而干扰其细胞表面表达和抗原呈递功能。目前,尚不清楚E3/19K蛋白究竟识别MHC分子的哪种结构。我们之前已经证明,鼠H-2Kd抗原能够与E3/19K结合,而等位基因H-2Kk分子则不能。通过在Kd和Kk分子之间进行外显子改组,I类MHC分子的α1和α2结构域被确定为与病毒蛋白结合的关键结构。在本报告中,我们研究了MHC的α2结构域内单个氨基酸对结合E3/19K的贡献。首先,我们表明在该结构域内,α螺旋部分对于与E3/19K的相互作用最为重要。通过定点诱变,将Kd特异性氨基酸引入Kk的α2结构域的α螺旋中。通过在E3/19K+细胞中表达诱变蛋白,我们确定Tyr 156和Leu 180对于与E3/19K蛋白的结合至关重要。此外,Kd残基Glu 163似乎有助于复合物的形成。此外,一组Kd/Dd重组体的分析表明,Dd分子中的类似区域,即α2结构域的C端一半,影响与E3/19K 的结合。将这些结果与抗体结合数据相结合,我们提出了腺病毒蛋白可能如何与α1和α2结构域结合的两种替代模型。

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