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. 2024 Jun;25(6):981-993.
doi: 10.1038/s41590-024-01848-3. Epub 2024 May 29.

An IFNγ-dependent immune-endocrine circuit lowers blood glucose to potentiate the innate antiviral immune response

Affiliations

An IFNγ-dependent immune-endocrine circuit lowers blood glucose to potentiate the innate antiviral immune response

Marko Šestan et al. Nat Immunol. 2024 Jun.

Abstract

Viral infection makes us feel sick as the immune system alters systemic metabolism to better fight the pathogen. The extent of these changes is relative to the severity of disease. Whether blood glucose is subject to infection-induced modulation is mostly unknown. Here we show that strong, nonlethal infection restricts systemic glucose availability, which promotes the antiviral type I interferon (IFN-I) response. Following viral infection, we find that IFNγ produced by γδ T cells stimulates pancreatic β cells to increase glucose-induced insulin release. Subsequently, hyperinsulinemia lessens hepatic glucose output. Glucose restriction enhances IFN-I production by curtailing lactate-mediated inhibition of IRF3 and NF-κB signaling. Induced hyperglycemia constrained IFN-I production and increased mortality upon infection. Our findings identify glucose restriction as a physiological mechanism to bring the body into a heightened state of responsiveness to viral pathogens. This immune-endocrine circuit is disrupted in hyperglycemia, possibly explaining why patients with diabetes are more susceptible to viral infection.

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References

    1. Hart, B. L. Biological basis of the behavior of sick animals. Neurosci. Biobehav Rev. 12, 123–137 (1988). - PubMed - DOI
    1. Wensveen, F. M., Sestan, M., Turk Wensveen, T. & Polic, B. ‘Beauty and the beast’ in infection: how immune–endocrine interactions regulate systemic metabolism in the context of infection. Eur. J. Immunol. 49, 982–995 (2019). - PubMed - DOI
    1. Munger, J., Bajad, S. U., Coller, H. A., Shenk, T. & Rabinowitz, J. D. Dynamics of the cellular metabolome during human cytomegalovirus infection. PLoS Pathog. 2, e132 (2006). - PubMed - PMC - DOI
    1. Krapic, M., Kavazovic, I. & Wensveen, F. M. Immunological mechanisms of sickness behavior in viral infection. Viruses 13, 2245 (2021). - PubMed - PMC - DOI
    1. ElSayed, N. A. et al. 2. Classification and diagnosis of diabetes: standards of care in diabetes-2023. Diabetes Care 46, S19–S40 (2023). - PubMed - DOI

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