Regulation of memory CD4+ T-cell generation by intrinsic and extrinsic IL-27 signaling during malaria infection

Author:

Tsogtsaikhan Sanjaadorj12,Inoue Shin-Ichi12,Bayarsaikhan Ganchimeg1,Macalinao Maria Lourdes34,Kimura Daisuke1,Miyakoda Mana1,Yamamoto Masahiro5,Hara Hiromitsu6,Yoshida Hiroki7ORCID,Yui Katsuyuki1238ORCID

Affiliation:

1. Division of Immunology, Department of Molecular Microbiology and Immunology, Graduate School of Biomedical Sciences, Nagasaki University , Nagasaki 852-8523 , Japan

2. Program for Nurturing Global Leaders in Tropical and Emerging Communicable Diseases, Graduate School of Biomedical Sciences, Nagasaki University , Nagasaki 852-8523 , Japan

3. School of Tropical Medicine and Global Health, Nagasaki University , Nagasaki 852-8523 , Japan

4. Department of Infection Biology, Faculty of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine , Keppel Street, London WC1E 7HT , UK

5. Department of Immunoparasitology, Research Institute for Microbial Diseases, Osaka University , Suita, Osaka 565-0871 , Japan

6. Department of Immunology, Graduate School of Medical and Dental Sciences, Kagoshima University , 8-35-1, Sakuragaoka, Kagoshima 890-8544 , Japan

7. Division of Molecular and Cellular Immunoscience, Department of Biomolecular Sciences, Faculty of Medicine, Saga University , Saga 849 - 8501 , Japan

8. Shionogi Global Infectious Diseases Division, Institute of Tropical Medicine, Nagasaki University , Nagasaki 852-8523 , Japan

Abstract

Abstract The generation and maintenance of memory T cells are regulated by various factors, including cytokines. Previous studies have shown that IL-27 is produced during the early acute phase of Plasmodium chabaudi chabaudi AS (Pcc) infection and inhibits the development of Th1-type memory CD4+ T cells. However, whether IL-27 acts directly on its receptor on Plasmodium-specific CD4+ T cells or indirectly via its receptor on other immune cells remains unclear. We aimed to determine the role of IL-27 receptor signaling in different immune cell types in regulating the generation and phenotype of memory CD4+ T cells during Plasmodium infection. We utilized Plasmodium-specific T-cell antigen receptor (TCR) transgenic mice, PbT-II, and Il27rα−/− mice to assess the direct and indirect effects of IL-27 signaling on memory CD4+ T-cell generation. Mice were transferred with PbT-II or Il27rα−/− PbT-II cells and infected with Pcc. Conditional knockout mice lacking the IL-27 receptor in T cells or dendritic cells were employed to discern the specific immune cell types involved in IL-27 receptor signaling. High levels of memory in PbT-II cells with Th1-shift occurred only when both PbT-II and host cells lacked the IL-27 receptor, suggesting the predominant inhibitory role of IL-27 signaling in both cell types. Furthermore, IL-27 receptor signaling in T cells limited the number of memory CD4+ T cells, while signaling in both T and dendritic cells contributed to the Th1 dominance of memory CD4+ T cells. These findings underscore the complex cytokine signaling network regulating memory CD4+ T cells during Plasmodium infection.

Funder

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

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