Multimodal HLA-I genotype regulation by human cytomegalovirus US10 and resulting surface patterning

Author:

Gerke Carolin1234ORCID,Bauersfeld Liane12,Schirmeister Ivo12,Mireisz Chiara Noemi-Marie5,Oberhardt Valerie26,Mery Lea12,Wu Di12,Jürges Christopher Sebastian7,Spaapen Robbert M89,Mussolino Claudio21011,Le-Trilling Vu Thuy Khanh12ORCID,Trilling Mirko1213ORCID,Dölken Lars714,Paster Wolfgang15,Erhard Florian7,Hofmann Maike26,Schlosser Andreas5,Hengel Hartmut2ORCID,Momburg Frank16,Halenius Anne12ORCID

Affiliation:

1. Institute of Virology, Medical Center University of Freiburg

2. Faculty of Medicine, University of Freiburg

3. Spemann Graduate School of Biology and Medicine (SGBM), University of Freiburg

4. Faculty of Biology, University of Freiburg

5. Rudolf Virchow Center, Center for Integrative and Translational Bioimaging, University of Würzburg

6. Department of Medicine II (Gastroenterology, Hepatology, Endocrinology and Infectious Diseases), Medical Center University of Freiburg

7. Institute for Virology and Immunobiology, University of Würzburg

8. Department of Immunopathology, Sanquin Research

9. Landsteiner Laboratory, Amsterdam UMC, University of Amsterdam

10. Institute for Transfusion Medicine and Gene Therapy, Medical Center University of Freiburg

11. Center for Chronic Immunodeficiency, Medical Center University of Freiburg

12. Institute for Virology, University Hospital Essen, University of Duisburg-Essen

13. Institute for the Research on HIV and AIDS-associated Diseases, University Hospital Essen

14. Institute of Virology, Hannover Medical School

15. St. Anna Children’s Cancer Research Institute (CCRI)

16. Clinical Cooperation Unit Applied Tumor Immunity, German Cancer Research Center, National Center for Tumor Diseases (NCT), Heidelberg University Hospital

Abstract

Human leucocyte antigen class I (HLA-I) molecules play a central role for both NK and T-cell responses that prevent serious human cytomegalovirus (HCMV) disease. To create opportunities for viral spread, several HCMV-encoded immunoevasins employ diverse strategies to target HLA-I. Among these, the glycoprotein US10 is so far insufficiently studied. While it was reported that US10 interferes with HLA-G expression, its ability to manipulate classical HLA-I antigen presentation remains unknown. In this study, we demonstrate that US10 recognizes and binds to all HLA-I (HLA-A, -B, -C, -E, -G) heavy chains. Additionally, impaired recruitment of HLA-I to the peptide loading complex was observed. Notably, the associated effects varied significantly dependending on HLA-I genotype and allotype: (i) HLA-A molecules evaded downregulation by US10, (ii) tapasin-dependent HLA-B molecules showed impaired maturation and cell surface expression, and (iii) β2m-assembled HLA-C, in particular HLA-C*05:01 and -C*12:03, and HLA-G were strongly retained in complex with US10 in the endoplasmic reticulum. These genotype-specific effects on HLA-I were confirmed through unbiased HLA-I ligandome analyses. Furthermore, in HCMV-infected fibroblasts inhibition of overlapping US10 and US11 transcription had little effect on HLA-A, but induced HLA-B antigen presentation. Thus, the US10-mediated impact on HLA-I results in multiple geno- and allotypic effects in a so far unparalleled and multimodal manner.

Funder

Deutsche Forschungsgemeinschaft

Publisher

eLife Sciences Publications, Ltd

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