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.

Immunogenetics
|August 22, 2018
PubMed

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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