Zhang Q J, Gavioli R, Klein G, Masucci M G
Department of Tumor Biology, Karolinska Institute, Stockholm, Sweden.
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2217-21. doi: 10.1073/pnas.90.6.2217.
T lymphocytes recognize their antigenic targets as peptides associated with major histocompatibility complex molecules. The HLA-A11 allele, a preferred restriction element for Epstein-Barr virus (EBV)-specific cytotoxic T-lymphocyte responses, presents an immunodominant epitope derived from the EBV nuclear antigen 4. Subpicomolar concentrations of a synthetic nonamer peptide, IVTDFSVIK, corresponding to amino acids 416-424 of the EBV nuclear antigen 4 sequence, can sensitize phytohemagglutinin-stimulated blasts to lysis by EBV-specific HLA-A11-restricted cytotoxic T-lymphocytes. We show that micromolar concentrations of this peptide induce assembly and surface expression of HLA-A11 in an A11-transfected subline of the peptide transporter mutant cell line T2. Using the IVTDFSVIK peptide and a series of synthetic nonamer peptides, differing from the original sequence by single amino acid substitutions, we have defined a motif for HLA-A11-binding peptides. This predicts the presence of a hydrophobic amino acid in position 2, amino acids with small side chains in positions 3 and 6, and a lysine in position 9. Using this motif, we have identified a peptide in the carboxyl-terminal end of wild-type p53, ELNEALELK, which is able to induce HLA-A11 assembly as efficiently as the IVTDFSVIK viral peptide.
T淋巴细胞将其抗原靶标识别为与主要组织相容性复合体分子相关的肽段。HLA - A11等位基因是爱泼斯坦 - 巴尔病毒(EBV)特异性细胞毒性T淋巴细胞反应的首选限制性元件,它呈递源自EBV核抗原4的免疫显性表位。对应于EBV核抗原4序列第416 - 424位氨基酸的合成九聚体肽IVTDFSVIK,其亚皮摩尔浓度就能使植物血凝素刺激的母细胞对EBV特异性HLA - A11限制性细胞毒性T淋巴细胞的裂解敏感。我们发现,该肽的微摩尔浓度能在肽转运体突变细胞系T2的A11转染亚系中诱导HLA - A11的组装和表面表达。使用IVTDFSVIK肽和一系列通过单氨基酸替换与原始序列不同的合成九聚体肽,我们确定了HLA - A11结合肽的基序。这预测在第2位存在一个疏水氨基酸,在第3位和第6位存在小侧链氨基酸,在第9位存在一个赖氨酸。利用这个基序,我们在野生型p53的羧基末端鉴定出一个肽段ELNEALELK,它诱导HLA - A11组装的效率与IVTDFSVIK病毒肽一样高。