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Updated: Feb 6, 2026

Personalized Peptide Arrays for Detection of HLA Alloantibodies in Organ Transplantation
Published on: September 6, 2017
The polymorphism at residue 156 determines the HLA-B*35 restricted peptide repertoire during HCMV infection
Wiebke C Abels1, Trishna Manandhar1, Heike Kunze-Schumacher1
1Institute for Transfusion Medicine, Hannover Medical School, Hannover, Germany.
Abstract:
Peptide selection in infected cells is not fully understood yet, but several indications point to the fact that there are differences to uninfected cells, especially in productive HCMV infection, since HCMV evolved various strategies to disable the hosts immune system, including presentation of peptide-HLA complexes to immune effector cells. Therefore, peptide predictions for specific HLA alleles are limited in these cases and the naturally presented peptide repertoire of HCMV-infected cells is of major interest to optimize adoptive T cell therapies. The allotypes HLA-B*35:01 and B*35:08 differ at a single amino acid at position 156 and have been described to differ in their peptide features and in their association with the peptide loading complex. Virus specific T cells recognizing the allelic pHLA-B*35 complexes could be detected, indicating a significant role of this HLA subtypes in viral immunity. However, naturally selected and presented viral peptides have not been described so far. In this study, we analyzed the peptide binding repertoire for HLA-B*35:01 and HLA-B*35:08 in HCMV-infected cells. The isolated peptides from both allelic subtypes were of extraordinary length, however differed in their features, origin, and sequence. For these HCMV-originated peptides, no overlap in the peptide repertoire could be observed between the two allelic subtypes. These findings reveal the discrepancies between predicted and naturally presented immunogenic epitopes and support the need of comprehensive peptide recruitment data for personalized and effective cellular therapies.
Insights
Understanding peptide presentation in cytomegalovirus (CMV) infected cells is crucial for T cell therapies. This study reveals distinct viral peptide repertoires for HLA-B*35 subtypes, highlighting differences from predictions.
Area of Science:
- Immunology
- Virology
- Molecular Biology
Background:
- Peptide selection in human cytomegalovirus (HCMV) infected cells differs from uninfected cells.
- HCMV employs strategies to evade the host immune system, impacting peptide-HLA complex presentation.
- Accurate prediction of viral peptides presented by specific HLA alleles is challenging in infected cells.
Purpose of the Study:
- To analyze the naturally presented peptide repertoire for HLA-B*35:01 and HLA-B*35:08 in HCMV-infected cells.
- To compare the peptide binding features between these two closely related HLA-B*35 allotypes.
- To identify naturally selected viral epitopes for optimizing adoptive T cell therapies.
Main Methods:
- Analysis of peptide binding repertoire from HCMV-infected cells expressing HLA-B*35:01 and HLA-B*35:08.
- Isolation and characterization of naturally presented peptides associated with each HLA allotype.
Main Results:
- Peptides isolated from both HLA-B*35:01 and HLA-B*35:08 were of extraordinary length.
- Significant differences were observed in peptide features, origin, and sequence between the two allotypes.
- No overlap in the HCMV-originated peptide repertoire was found between HLA-B*35:01 and HLA-B*35:08.
Conclusions:
- Naturally presented viral peptide repertoires differ significantly between closely related HLA alleles.
- There are discrepancies between predicted and naturally presented immunogenic epitopes.
- Comprehensive peptide repertoire data is essential for developing personalized and effective cellular therapies against HCMV.
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