Immune selection for altered antigen processing leads to cytotoxic T lymphocyte escape in chronic HIV-1 infection

慢性 HIV-1 感染中改变抗原处理的免疫选择导致细胞毒性 T 淋巴细胞逃逸

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作者:Rika Draenert, Sylvie Le Gall, Katja J Pfafferott, Alasdair J Leslie, Polan Chetty, Christian Brander, Edward C Holmes, Shih-Chung Chang, Margaret E Feeney, Marylyn M Addo, Lidia Ruiz, Danni Ramduth, Prakash Jeena, Marcus Altfeld, Stephanie Thomas, Yanhua Tang, Cori L Verrill, Catherine Dixon, Julia

Abstract

Mutations within cytotoxic T lymphocyte (CTL) epitopes impair T cell recognition, but escape mutations arising in flanking regions that alter antigen processing have not been defined in natural human infections. In human histocompatibility leukocyte antigen (HLA)-B57+ HIV-infected persons, immune selection pressure leads to a mutation from alanine to proline at Gag residue 146 immediately preceding the NH2 terminus of a dominant HLA-B57-restricted epitope, ISPRTLNAW. Although N-extended wild-type or mutant peptides remained well-recognized, mutant virus-infected CD4 T cells failed to be recognized by the same CTL clones. The A146P mutation prevented NH2-terminal trimming of the optimal epitope by the endoplasmic reticulum aminopeptidase I. These results demonstrate that allele-associated sequence variation within the flanking region of CTL epitopes can alter antigen processing. Identifying such mutations is of major relevance in the construction of vaccine sequences.

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