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Updated: Nov 24, 2025

Generation of Multivirus-specific T Cells to Prevent/treat Viral Infections after Allogeneic Hematopoietic Stem Cell Transplant
Published on: May 27, 2011
Mechanism of EBV inducing anti-tumour immunity and its therapeutic use
Il-Kyu Choi1,2, Zhe Wang1,2, Qiang Ke1,3
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA, USA.
Abstract:
Tumour-associated antigens (TAAs) comprise a large set of non-mutated cellular antigens recognized by T cells in human and murine cancers. Their potential as targets for immunotherapy has been explored for more than two decades1, yet the origins of TAA-specific T cells remain unclear. While tumour cells may be an important source of TAAs for T cell priming2, several recent studies suggest that infection with some viruses, including Epstein-Barr virus and influenza virus can elicit T cell responses against abnormally expressed cellular antigens that function as TAAs3,4. However, the cellular and molecular basis of such responses remains undefined. Here we show that expression of the Epstein-Barr virus signalling protein LMP1 in B cells provokes T cell responses to multiple TAAs. LMP1 signalling leads to overexpression of many cellular antigens previously shown to be TAAs, their presentation on major histocompatibility complex classes I (MHC-I) and II (MHC-II) (mainly through the endogenous pathway) and the upregulation of costimulatory ligands CD70 and OX40L, thereby inducing potent cytotoxic CD4+ and CD8+ T cell responses. These findings delineate a mechanism of infection-induced anti-tumour immunity. Furthermore, by ectopically expressing LMP1 in tumour B cells from patients with cancer and thereby enabling them to prime T cells, we develop a general approach for rapid production of autologous cytotoxic CD4+ T cells against a wide range of endogenous tumour antigens, such as TAAs and neoantigens, for treating B cell malignancies. This work stresses the need to revisit classical concepts concerning viral and tumour immunity, which will be critical to fully understand the impact of common infections on human health and to improve the rational design of immune approaches to treatment of cancers.
Insights
Epstein-Barr virus protein LMP1 triggers T cell responses to tumour-associated antigens (TAAs). This discovery offers a new strategy for generating anti-cancer T cells for immunotherapy against B cell malignancies.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- Tumour-associated antigens (TAAs) are recognized by T cells in cancers, but their origins are unclear.
- While tumour cells can prime T cells, viral infections may also elicit responses against TAAs.
- The mechanisms underlying infection-induced TAA responses are not well-defined.
Purpose of the Study:
- To investigate the role of Epstein-Barr virus (EBV) signaling protein LMP1 in T cell responses to TAAs.
- To elucidate the cellular and molecular basis of infection-induced anti-tumour immunity.
- To develop a novel approach for generating autologous T cells for cancer immunotherapy.
Main Methods:
- Ectopic expression of EBV LMP1 in B cells.
- Analysis of TAA presentation on MHC class I and II molecules.
- Assessment of costimulatory ligand upregulation (CD70, OX40L).
- Induction and characterization of cytotoxic CD4+ and CD8+ T cell responses.
Main Results:
- LMP1 expression in B cells induced T cell responses to multiple TAAs.
- LMP1 signaling led to TAA overexpression and presentation via MHC-I and MHC-II.
- Upregulation of CD70 and OX40L by LMP1 promoted potent cytotoxic T cell responses.
- Ectopic LMP1 expression in patient-derived tumour B cells enabled T cell priming.
Conclusions:
- EBV LMP1 drives T cell responses against TAAs through antigen presentation and costimulatory molecule upregulation.
- This defines a mechanism for infection-induced anti-tumour immunity.
- A novel method for rapid generation of autologous cytotoxic T cells against TAAs and neoantigens for B cell malignancies is established.
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