Specificity and degeneracy in peptide binding to HLA-B7-like class I molecules

退化(生物学) 亲缘关系 人类白细胞抗原 分子 小分子 结合亲和力 化学 结合位点 计算生物学 生物 立体化学 生物化学 遗传学 抗原 受体 有机化学
作者
John Sidney,Scott Southwood,Marika Guercio,H M Grey,Robert W. Chesnut,Ralph T. Kubo,Alessandro Sette
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:157 (8): 3480-3490 被引量:104
标识
DOI:10.4049/jimmunol.157.8.3480
摘要

The HLA-B7-like binding supertype includes several different HLA-B molecules. Herein, the primary and secondary anchor specificities of the five most common HLA-B7-like molecules (B*0702, B*3501, B51, B*5301, and B*5401) were defined by the use of molecular binding assays, analogue peptides, and large sets of peptides corresponding to naturally occurring sequences. All five B7-like molecules analyzed preferentially bound 9-mers, with a stringent requirement for proline in position 2, while a variety of hydrophobic or aromatic residues were well tolerated at the C-terminal anchor position. Although most peptides bound in an allele-specific fashion, approximately 20% of the binders identified were degenerate and bound at least three of the five B7-like molecules analyzed with affinities of 500 nM or less. It was also noted that, in general, peptides that bind with high affinity to any given one B7-like molecule were also most frequently capable of degenerate binding. Prominent roles for secondary anchors in positions 1 and 3 were observed for most B7-like molecules, and secondary anchor motifs were utilized to derive an HLA-B7-like supermotif. The validity of this B7-like supermotif was tested by a blind prediction set. Finally, the B7-like supermotif was utilized to derive a general strategy for rationally engineering peptide analogues of naturally occurring sequences with greatly increased binding affinity and degeneracy. Such engineered supermotif binding peptides may be of significant utility in the development of peptide-based vaccines against chronic viral diseases and cancer.

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