Kikuchi A, Sakaguchi T, Miwa K, Takamiya Y, Rammensee H G, Kaneko Y, Takiguchi M
Department of Tumor Biology, Institute of Medical Science, University of Tokyo, 4-6-1 Shirokanedai, Minota-ku, Tokyo 108, Japan.
Immunogenetics. 1996;43(5):268-76. doi: 10.1007/BF02440994.
The interaction between 9-mer peptides and HLA-B51 molecules was investigated by quantitative peptide binding assay using RMA-S cells expressing human beta2-microglobulin and HLA-B51 molecules. Of 147 chemically synthesized 9-mer peptides possessing two anchor residues corresponding to the motif of HLA-B5101 binding self-peptides, 27 peptides bound to HLA-B5101 molecules. Pro and Ala at position 2 as well as Ile at position 9 were confirmed to be main anchor residues, while Gly at position 2 as well as Val, Leu, and Met at position 9 were weak anchor residues for HLA-B5101. The A-pocket is suspected to have a critical role in peptide binding to MHC class I molecules because this pocket corresponds to the N-terminus of peptides and has a strong hydrogen bond formed by conserved Tyr residues. Further analysis of peptide binding to HLA-B5102 and B5103 molecules showed that a single amino acid substitution of Tyr for His at residue 171(B5102) and that of Gly for Trp at residue 167 (B5103) has a minimum effect in HLA-B51-peptide binding. Since previous studies showed that some HLA-B51 alloreactive CTL clones failed to kill the cells expressing HLA-B5102 or HLA-B*5103, these results imply that the structural change of the A-pocket among HLA-B51 subtypes causes a critical conformational change of the epitope for TCR recognition rather than influences the interaction between peptides and MHC class I molecules.
使用表达人β2-微球蛋白和HLA - B51分子的RMA - S细胞,通过定量肽结合试验研究了9聚体肽与HLA - B51分子之间的相互作用。在147个化学合成的9聚体肽中,有27个肽与HLA - B5101分子结合,这些肽具有两个对应于HLA - B5101结合自身肽基序的锚定残基。已证实第2位的脯氨酸和丙氨酸以及第9位的异亮氨酸是主要锚定残基,而第2位的甘氨酸以及第9位的缬氨酸、亮氨酸和甲硫氨酸是HLA - B5101的弱锚定残基。A口袋被怀疑在肽与MHC I类分子的结合中起关键作用,因为这个口袋对应于肽的N末端,并且由保守的酪氨酸残基形成强氢键。对肽与HLA - B5102和B5103分子结合的进一步分析表明,在残基171处酪氨酸被组氨酸单氨基酸取代(B5102)以及在残基167处甘氨酸被色氨酸取代(B5103)对HLA - B51 -肽结合的影响最小。由于先前的研究表明一些HLA - B51同种异体反应性CTL克隆无法杀死表达HLA - B5102或HLA - B*5103的细胞,这些结果表明HLA - B51亚型之间A口袋的结构变化导致了TCR识别表位的关键构象变化,而不是影响肽与MHC I类分子之间的相互作用。