EBV reactivation priming of the peripheral immune system in multiple sclerosis relapse

Despite decades of research, the cellular and molecular events preceding multiple sclerosis (MS) relapse remain incompletely understood. Here, in this observational study of longitudinal blood samples from patients with relapsing-remitting MS, we used single-cell RNA sequencing, bulk transcriptomics, multiparameter flow cytometry and targeted viral reverse transcription quantitative polymerase chain reaction (RT−qPCR) to construct a time-resolved atlas of immune perturbations surrounding relapse. A reproducible pre-relapse signature in monocytes and B cells, emerging up to 3 months before clinical onset, was enriched for host genes responsive to Epstein−Barr virus (EBV) lytic reactivation factors. RT−qPCR confirmed elevated EBV LMP-1 transcripts in pre-relapse B cells, and flow cytometry demonstrated expansion of CD11c+ atypical B cell populations displaying EBV surface protein gp350. Pre-relapse transcriptional modules overlapped with MS genome-wide association study (GWAS) risk loci and EBNA-2-bound enhancers, suggesting that inherited MS susceptibility and EBV-responsive programs operate through shared regulatory elements. How this peripheral activation relates to central nervous system lesion formation remains to be established. These findings nonetheless suggest that EBV reactivation, when occurring within a genetically predisposed peripheral immune environment, is a proximal precursor of MS relapse. Increased expression of EBV reactivation genes in B cells and MS risk genes targeted by the EBV protein EBNA-2 precedes MS attacks, linking EBV reactivation and genetic risk to the development of MS relapses.

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Publication Details

Journal
Nature Medicine
Published
2026-09-16
DOI
https://doi.org/10.1038/s41591-026-04665-3
Primary Topic
Multiple Sclerosis Research Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

EBV reactivation priming of the peripheral immune system in multiple sclerosis relapse

Laura Saucier, Shrishti Saxena, D. A. King, Tanuja Chitnis et al.
Nature Medicine
Multiple Sclerosis Research Studies
article

EBV reactivation priming of the peripheral immune system in multiple sclerosis relapse

Laura Saucier, Shrishti Saxena, D. A. King, Tanuja Chitnis, Ethan Goodman, Howard L. Weiner, Danielle Caefer, Benjamin E. Gewurz, Alena Zhirova, Anthilia Alchanat, Saoirse Nolan, Kyle C. Downer, Hrishikesh Lokhande, Jonmichael Aracena
article en

Abstract

Despite decades of research, the cellular and molecular events preceding multiple sclerosis (MS) relapse remain incompletely understood. Here, in this observational study of longitudinal blood samples from patients with relapsing-remitting MS, we used single-cell RNA sequencing, bulk transcriptomics, multiparameter flow cytometry and targeted viral reverse transcription quantitative polymerase chain reaction (RT−qPCR) to construct a time-resolved atlas of immune perturbations surrounding relapse. A reproducible pre-relapse signature in monocytes and B cells, emerging up to 3 months before clinical onset, was enriched for host genes responsive to Epstein−Barr virus (EBV) lytic reactivation factors. RT−qPCR confirmed elevated EBV LMP-1 transcripts in pre-relapse B cells, and flow cytometry demonstrated expansion of CD11c+ atypical B cell populations displaying EBV surface protein gp350. Pre-relapse transcriptional modules overlapped with MS genome-wide association study (GWAS) risk loci and EBNA-2-bound enhancers, suggesting that inherited MS susceptibility and EBV-responsive programs operate through shared regulatory elements. How this peripheral activation relates to central nervous system lesion formation remains to be established. These findings nonetheless suggest that EBV reactivation, when occurring within a genetically predisposed peripheral immune environment, is a proximal precursor of MS relapse. Increased expression of EBV reactivation genes in B cells and MS risk genes targeted by the EBV protein EBNA-2 precedes MS attacks, linking EBV reactivation and genetic risk to the development of MS relapses.

Nature Medicine
Broad Institute (US), Brigham and Women's Hospital (US), Harvard University (US), Neurosciences Institute (US), Massachusetts General Hospital (US), Institute of Neuroimmunology of the Slovak Academy of Sciences (SK)
U.S. Department of Defense
Zero hunger
Openalex Percentile: Top 13%
Multiple Sclerosis Research Studies
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