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Updated: May 6, 2026

In Vitro Differentiation Model of Human Normal Memory B Cells to Long-lived Plasma Cells
Published on: January 20, 2019
EBV finds a polycomb-mediated, epigenetic solution to the problem of oncogenic stress responses triggered by
1Section of Virology, Department of Medicine, Imperial College London London, UK.
Abstract:
Viruses that establish a persistent infection, involving intracellular latency, commonly stimulate cellular DNA synthesis and sometimes cell division early after infection. However, most cells of metazoans have evolved "fail-safe" responses that normally monitor unscheduled DNA synthesis and prevent cell proliferation when, for instance, cell proto-oncogenes are "activated" by mutation, amplification, or chromosomal rearrangements. These cell intrinsic defense mechanisms that reduce the risk of neoplasia and cancer are collectively called oncogenic stress responses (OSRs). Mechanisms include the activation of tumor suppressor genes and the so-called DNA damage response that together trigger pathways leading to cell cycle arrest (e.g., cell senescence) or complete elimination of cells (e.g., apoptosis). It is not surprising that viruses that can induce cellular DNA synthesis and cell division have the capacity to trigger OSR, nor is it surprising that these viruses have evolved countermeasures for inactivating or bypassing OSR. The main focus of this review is how the human tumor-associated Epstein-Barr virus manipulates the host polycomb group protein system to control - by epigenetic repression of transcription - key components of the OSR during the transformation of normal human B cells into permanent cell lines.
Insights
Epstein-Barr virus counters cellular defenses against cancer by epigenetically repressing oncogenic stress responses. This manipulation aids in transforming normal B cells into cancerous lines.
Area of Science:
- Virology
- Cell Biology
- Cancer Research
Background:
- Persistent viral infections can trigger cellular DNA synthesis and division.
- Metazoan cells possess intrinsic defense mechanisms, termed oncogenic stress responses (OSRs), to prevent cancer by monitoring DNA synthesis and cell proliferation.
- OSRs involve tumor suppressor genes and DNA damage responses, leading to cell cycle arrest or apoptosis.
Purpose of the Study:
- To investigate how Epstein-Barr virus (EBV) manipulates host cell machinery.
- To understand the epigenetic mechanisms EBV employs to evade OSRs during B cell transformation.
Main Methods:
- Review of literature on viral infections, OSRs, and epigenetic regulation.
- Focus on EBV's interaction with host polycomb group proteins.
Main Results:
- Viruses inducing cell proliferation can activate OSRs.
- Viruses often evolve mechanisms to counteract OSRs.
- EBV targets the host polycomb group protein system to epigenetically repress key OSR components.
Conclusions:
- Epstein-Barr virus utilizes epigenetic repression via the polycomb group protein system.
- This viral strategy effectively controls oncogenic stress responses.
- EBV's manipulation facilitates the transformation of human B cells into permanent cell lines, contributing to oncogenesis.
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