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TCRα链可变结构域与MHC II类I-A分子相互作用的表征

Characterization of the interaction of a TCR alpha chain variable domain with MHC II I-A molecules.

作者信息

Qadri A, Thatte J, Radu C G, Ober B, Ward E S

机构信息

Center for Immunology and Cancer Immunobiology Center, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75235-8576, USA.

出版信息

Int Immunol. 1999 Jun;11(6):967-77. doi: 10.1093/intimm/11.6.967.

Abstract

The alphabeta TCR recognizes peptides bound to MHC molecules. In the present study, we analyzed the interaction of a soluble TCR alpha chain variable domain (Valpha4.2-Jalpha40; abbreviated to Valpha4.2) with the MHC class II molecule I-Au. Valpha4.2 bound specifically to I-Au expressed on the surface of a transfected thymoma cell line. Modifications in the amino acid residues located within the three complementarity-determining regions (CDRs) of the Valpha domain did not markedly affect this interaction. However, mutation of glutamic acid to alanine at position 69 of the fourth hypervariable region (HV4alpha) significantly increased the binding. Antibody inhibition studies suggested that the binding site was partly contributed by a region of the beta chain of I-Au. Furthermore, the binding of Valpha4.2 to the MHC molecule was dependent on the nature of the peptide bound in the groove. Soluble Valpha4.2 specifically inhibited the activation of TCR transfectants by I-Au-expressing cells pulsed with an N-terminal peptide of myelin basic protein. Valpha4.2 also bound to MHC class II-expressing spleen cell populations from mice of the H-2(u) and H-2(d) haplotypes. The binding of Valpha4.2 to I-A molecules might explain the immunoregulatory effects reported previously for TCR alpha chains. This Valpha4.2 interaction may also be relevant to models of antigen presentation involving the binding of intact proteins to MHC class II molecules followed by their processing to generate epitopes suitable for T cell recognition.

摘要

αβT细胞受体识别与主要组织相容性复合体(MHC)分子结合的肽段。在本研究中,我们分析了可溶性T细胞受体α链可变区(Vα4.2-Jα40;简称为Vα4.2)与II类MHC分子I-Au的相互作用。Vα4.2特异性结合转染胸腺瘤细胞系表面表达的I-Au。Vα结构域的三个互补决定区(CDR)内氨基酸残基的修饰对这种相互作用没有明显影响。然而,第四高变区(HV4α)第69位的谷氨酸突变为丙氨酸显著增强了结合。抗体抑制研究表明,结合位点部分由I-Au的β链区域贡献。此外,Vα4.2与MHC分子的结合取决于结合在凹槽中的肽段的性质。可溶性Vα4.2特异性抑制用髓鞘碱性蛋白N端肽脉冲处理的表达I-Au的细胞对TCR转染细胞的激活。Vα4.2也与H-2(u)和H-2(d)单倍型小鼠的表达II类MHC的脾细胞群体结合。Vα4.2与I-A分子的结合可能解释了先前报道的TCRα链的免疫调节作用。这种Vα4.2相互作用也可能与抗原呈递模型相关,该模型涉及完整蛋白质与II类MHC分子结合,随后进行加工以产生适合T细胞识别的表位。

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