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Characteristics of endogenous peptides eluted from the class I MHC molecule HLA-B7 determined by mass spectrometry and computer modeling.

E L Huczko, W M Bodnar, D Benjamin, K Sakaguchi, N Z Zhu, J Shabanowitz, R A Henderson, E Appella, D F Hunt and V H Engelhard
J Immunol September 1, 1993, 151 (5) 2572-2587;
E L Huczko
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W M Bodnar
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D Benjamin
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K Sakaguchi
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N Z Zhu
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J Shabanowitz
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R A Henderson
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E Appella
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D F Hunt
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V H Engelhard
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Abstract

Microcapillary HPLC electrospray ionization tandem mass spectrometry was used to sequence 15 peptides eluted from HLA-B7. Sequence alignment implicated four peptide positions in specific interactions with the class I molecule, and their importance was confirmed using synthetic peptides. Because no crystal structure for HLA-B7 was available, computer-assisted modeling was used to understand novel aspects of peptide binding specificity and to accurately predict the effect of defined changes in peptide structure. The results demonstrate that mass-spectrometric sequencing coupled with computer-assisted modeling can be used in the absence of a crystal structure to make accurate predictions concerning requirements for peptide binding to class I molecules. These techniques may be valuable to predict or engineer T cell epitopes.

  • Copyright © 1993 by American Association of Immunologists
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The Journal of Immunology
Vol. 151, Issue 5
1 Sep 1993
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Characteristics of endogenous peptides eluted from the class I MHC molecule HLA-B7 determined by mass spectrometry and computer modeling.
E L Huczko, W M Bodnar, D Benjamin, K Sakaguchi, N Z Zhu, J Shabanowitz, R A Henderson, E Appella, D F Hunt, V H Engelhard
The Journal of Immunology September 1, 1993, 151 (5) 2572-2587;

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Characteristics of endogenous peptides eluted from the class I MHC molecule HLA-B7 determined by mass spectrometry and computer modeling.
E L Huczko, W M Bodnar, D Benjamin, K Sakaguchi, N Z Zhu, J Shabanowitz, R A Henderson, E Appella, D F Hunt, V H Engelhard
The Journal of Immunology September 1, 1993, 151 (5) 2572-2587;
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Print ISSN 0022-1767        Online ISSN 1550-6606