Completed Infection & Immunity Genetics & Molecular Biology

Human cytomegalovirus latency, reactivation and immune control

In plain English

AI plain-English summary

Most people carry human cytomegalovirus without ever knowing it, but the virus can turn deadly in newborns and patients with weakened immune systems. This matters because HCMV is the most common infectious cause of birth defects in the UK, and there is no vaccine. The virus hides silently in immune cells for a lifetime, then reawakens when the immune system is compromised—causing pneumonia, organ damage, or developmental problems. Researchers do not yet understand the molecular switch that keeps the virus dormant or what flips it back on. This project aims to identify the precise mechanisms that maintain latency and the signals that trigger reactivation, as well as how a healthy immune system normally keeps the virus in check. If successful, the work could directly inform vaccine design and antiviral therapies for HCMV. Because many persistent viruses—including herpes simplex and Epstein-Barr—use similar latency strategies, insights from this fundamental science may also illuminate broader principles of how the human body controls long-term viral infections. This is primarily curiosity-driven research into a basic biological process, but understanding that process is a necessary step before any practical intervention can be developed.

View original technical description
Human cytomegalovirus (HCMV) is a virus which is carried without symptoms by the majority of the population. However, it can cause serious disease in infants born to mothers who acquire the infection in pregnancy and in people whose immune system is suppressed. Understanding how the virus succeeds in maintaining itself in most people without causing disease and how this relationship breaks down to cause disease should help develop better methods of treating the virus and of designing a vaccine (there is currently no vaccine available). Our research is aimed at determining (i) the mechanism by which the virus maintains silent infection (latency) in specialised cells of the immune system and the factors that reawake it and (ii) how the immune system controls the infection in normal people. In addition to advancing our understanding of HCMV in particular, this research may also lead to a better understanding of other virus infections which persist in the body, and how the human host controls them.

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Researchers

John Sinclair (Principal Investigator)Mark Wills (Co-Investigator)Patrick Sissons (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Human cytomegalovirus: changes in the latently infected cell as chemotherapeutic and immunological targets for antiviral therapy
Understanding human cytomegalovirus latency as a means to target the latent reservoir
The molecular and immunological mechanisms regulating human cytomegalovirus latency, reactivation and pathogenesis.
The impact of viral gene expression and cellular signalling upon the control of HCMV latency and reactivation
Modulating Immune Responses to Control Virus Infection

Original classification

Research Grant

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