Abstract
The human tumor viruses Epstein-Barr virus (EBV) and Kaposi sarcoma-associated herpesvirus (KSHV) establish persistent infections in B cells. KSHV is linked to primary effusion lymphoma (PEL), and 90% of PELs also contain EBV. Studies on persistent KSHV infection in vivo and the role of EBV co-infection in PEL development have been hampered by the absence of small animal models. We developed mice reconstituted with human immune system components as a model for KSHV infection and find that EBV/KSHV dual infection enhanced KSHV persistence and tumorigenesis. Dual-infected cells displayed a plasma cell-like gene expression pattern similar to PELs. KSHV persisted in EBV-transformed B cells and was associated with lytic EBV gene expression, resulting in increased tumor formation. Evidence of elevated lytic EBV replication was also found in EBV/KSHV dually infected lymphoproliferative disorders in humans. Our data suggest that KSHV augments EBV-associated tumorigenesis via stimulation of lytic EBV replication. McHugh et al. describe a small animal model of KSHV infection and demonstrate that KSHV collaborates with another human gamma herpes virus, EBV, to establish persistent infection in B cells. The emerging transformed cells resemble primary effusion lymphomas, the malignancies that frequently harbor both viruses in humans.
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McHugh, D., Caduff, N., Barros, M. H. M., Rämer, P. C., Raykova, A., Murer, A., … Münz, C. (2017). Persistent KSHV Infection Increases EBV-Associated Tumor Formation In Vivo via Enhanced EBV Lytic Gene Expression. Cell Host and Microbe, 22(1), 61-73.e7. https://doi.org/10.1016/j.chom.2017.06.009
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