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PMID: 33020271 Published · ppublish English

Rewiring of B cell receptor signaling by Epstein-Barr virus LMP2A.

Fish K, Comoglio F, Shaffer AL, Ji Y, Pan KT, Scheich S, Oellerich A, Doebele C, Ikeda M, Schaller SJ, Nguyen H, Muppidi J, Wright GW, Urlaub H, Serve H, Staudt LM, Longnecker R, Oellerich T

Abstract

Epstein-Barr virus (EBV) infects human B cells and reprograms them to allow virus replication and persistence. One key viral factor in this process is latent membrane protein 2A (LMP2A), which has been described as a B cell receptor (BCR) mimic promoting malignant transformation. However, how LMP2A signaling contributes to tumorigenesis remains elusive. By comparing LMP2A and BCR signaling in primary human B cells using phosphoproteomics and transcriptome profiling, we identified molecular mechanisms through which LMP2A affects B cell biology. Consistent with the literature, we found that LMP2A mimics a subset of BCR signaling events, including tyrosine phosphorylation of the kinase SYK, the calcium initiation complex consisting of BLNK, BTK, and PLCγ2, and its downstream transcription factor NFAT. However, the majority of LMP2A-induced signaling events markedly differed from those induced by BCR stimulation. These included differential phosphorylation of kinases, phosphatases, adaptor proteins, transcription factors such as nuclear factor κB (NF-κB) and TCF3, as well as widespread changes in the transcriptional output of LMP2A-expressing B cells. LMP2A affected apoptosis and cell-cycle checkpoints by dysregulating the expression of apoptosis regulators such as BCl-xL and the tumor suppressor retinoblastoma-associated protein 1 (RB1). LMP2A cooperated with MYC and mutant cyclin D3, two oncogenic drivers of Burkitt lymphoma, to promote proliferation and survival of primary human B cells by counteracting MYC-induced apoptosis and by inhibiting RB1 function, thereby promoting cell-cycle progression. Our results indicate that LMP2A is not a pure BCR mimic but rather rewires intracellular signaling in EBV-infected B cells that optimizes cell survival and proliferation, setting the stage for oncogenic transformation.

Keywords
B cell receptor Epstein–Barr virus lymphoma signal transduction
MeSH 主题词
Adaptor Proteins, Signal Transducing/metabolism Apoptosis/physiology B-Lymphocytes/metabolism Herpesvirus 4, Human/metabolism Humans Membrane Proteins/metabolism NF-kappa B/metabolism NFATC Transcription Factors/metabolism Phosphorylation Receptors, Antigen, B-Cell/metabolism Signal Transduction Syk Kinase/metabolism Viral Matrix Proteins/metabolism
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2020-00-20
Language
English
Country/Region
United States
NLM ID
7505876
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