Chronic HIV‐1 Tat action induces HLA‐DR downregulation in B cells: A mechanism for lymphoma immune escape in people living with HIV

Author:

Shmakova Anna12ORCID,Hugot Coline1,Kozhevnikova Yana1,Schwager (Karpukhina) Anna12,Tsimailo Ivan1,Gérard Laurence3,Boutboul David3,Oksenhendler Eric3,Szewczyk‐Roszczenko Olga4,Roszczenko Piotr5ORCID,Buzun Kamila6,Sheval Eugene V.78,Germini Diego1,Vassetzky Yegor12ORCID

Affiliation:

1. CNRS, UMR 9018, Université Paris‐Saclay Institut Gustave Roussy Villejuif France

2. Koltzov Institute of Developmental Biology Moscow Russia

3. Service d'Immunopathologie Clinique Hôpital St Louis, APHP Paris France

4. Department of Synthesis and Technology of Drugs Medical University of Bialystok Bialystok Poland

5. Department of Biotechnology Medical University of Bialystok Bialystok Poland

6. Department of Pharmaceutical Sciences Poznan University of Medical Sciences Poznan Poland

7. Belozersky Institute of Physico‐Chemical Biology Lomonosov Moscow State University Moscow Russia

8. Department of Cell Biology and Histology Lomonosov Moscow State University Moscow Russia

Abstract

AbstractDespite the success of combination antiretroviral therapy, people living with human immunodeficiency virus (HIV) still have an increased risk of Epstein−Barr virus (EBV)‐associated B cell malignancies. In the HIV setting, B cell physiology is altered by coexistence with HIV‐infected cells and the chronic action of secreted viral proteins, for example, HIV‐1 Tat that, once released, efficiently penetrates noninfected cells. We modeled the chronic action of HIV‐1 Tat on B cells by ectopically expressing Tat or TatC22G mutant in two lymphoblastoid B cell lines. The RNA‐sequencing analysis revealed that Tat deregulated the expression of hundreds of genes in B cells, including the downregulation of a subset of major histocompatibility complex (MHC) class II‐related genes. Tat‐induced downregulation of HLA‐DRB1 and HLA‐DRB5 genes led to a decrease in HLA‐DR surface expression; this effect was reproduced by coculturing B cells with Tat‐expressing T cells. Chronic Tat presence decreased the NF‐ᴋB pathway activity in B cells; this downregulated NF‐ᴋB‐dependent transcriptional targets, including MHC class II genes. Notably, HLA‐DRB1 and surface HLA‐DR expression was also decreased in B cells from people with HIV. Tat‐induced HLA‐DR downregulation in B cells impaired EBV‐specific CD4+ T cell response, which contributed to the escape from immune surveillance and could eventually promote B cell lymphomagenesis in people with HIV.

Publisher

Wiley

Subject

Infectious Diseases,Virology

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