T cell immunity plays a major role in determining the outcome of infection. Chronic infections are often distinguished by T cell responses that are not able to fully eliminate the pathogen. The mechanisms that explain this failure of T cell effector responses are only beginning to be understood. During the current funding period, we have used the LCMV model to investigate how the PD-1 pathway regulates T cell responses during acute and chronic infection. We have discovered that the PD-1+ stem-like population is responsible for the dramatic expansion of CD8+ T cells after PD-1 pathway. In addition, we identified roles of the PD-1 pathway in regulating CD8 and humoral responses during acute viral infection. However, the mechanisms of PD-1 signaling and its blockade are still not well understood. A deeper understanding of PD-1 signaling is needed to determine how to improve anti-viral immunity, while minimizing autoimmunity and immunopathology. To address this issue, we worked with Core C to generate novel PD-1 signaling domain mutant mice. We have found that both the PD-1 ITIM and ITSM motifs mediate PD-1 signaling in vivo. Notably, our data suggest the possibility to dissociate beneficial effects of PD-1 pathway blockade on viral immunity from immunopathology. Our findings complement those of Project 2 showing that ITIM and ITSM mutant mice have distinct outcomes in cancer and autoimmunity models, and Project 3 showing distinct outcomes in transplantation. Based on these data, we hypothesize that the PD-1 ITIM and ITSM motifs have distinct and overlapping functions, and that cell type and disease context will dictate which signaling motif is critical for controlling different aspects of the PD-1 inhibitory signal. In addition, we have discovered that the inhibitory receptors CD101 and CD112R are highly expressed on more terminally exhausted T cells with distinctive functional properties during chronic viral infection. Projects 2 and 3 have identified distinctive Tregs that highly express CD112R and CD101. Our findings lead us to hypothesize that CD101 and CD112R may serve as additional brakes on CD8 T cells in chronic infection, reducing their ability to respond to PD-1 blockade. To test these hypotheses, our Specific Aims are to 1) investigate roles of the PD-1 ITIM and ITSM motifs in controlling protective immunity versus immunopathology during acute and chronic viral infection; and 2) identify roles of CD101 and CD112R in controlling T cell exhaustion. Our goals are to elucidate mechanisms by which PD-1 regulates T cell exhaustion, identify new strategies for combination therapies to enhance T cell immunity during chronic viral infection, as well as new strategies to augment protective immunity during acute infections.

Public Health Relevance

Chronic viral infections cause significant morbidity and mortality, and T cell dysfunction is a major reason for failure of viral control during chronic infections. Identifying new strategies for combination therapies to treat chronic viral infections and augment acute infections will greatly improve global health.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program Projects (P01)
Project #
5P01AI056299-17
Application #
9996460
Study Section
Special Emphasis Panel (ZAI1)
Project Start
2003-09-30
Project End
2024-08-31
Budget Start
2020-08-31
Budget End
2021-08-30
Support Year
17
Fiscal Year
2020
Total Cost
Indirect Cost
Name
Harvard Medical School
Department
Type
DUNS #
047006379
City
Boston
State
MA
Country
United States
Zip Code
02115
Owen, David L; Mahmud, Shawn A; Vang, Kieng B et al. (2018) Identification of Cellular Sources of IL-2 Needed for Regulatory T Cell Development and Homeostasis. J Immunol 200:3926-3933
Prestipino, Alessandro; Emhardt, Alica J; Aumann, Konrad et al. (2018) Oncogenic JAK2V617F causes PD-L1 expression, mediating immune escape in myeloproliferative neoplasms. Sci Transl Med 10:
Du, Jing; Flynn, Ryan; Paz, Katelyn et al. (2018) Murine chronic graft-versus-host disease proteome profiling discovers CCL15 as a novel biomarker in patients. Blood 131:1743-1754
Zeiser, Robert; Sarantopoulos, Stefanie; Blazar, Bruce R (2018) B-cell targeting in chronic graft-versus-host disease. Blood 131:1399-1405
Blazar, Bruce R; MacDonald, Kelli P A; Hill, Geoffrey R (2018) Immune regulatory cell infusion for graft-versus-host disease prevention and therapy. Blood 131:2651-2660
Chihara, Norio; Madi, Asaf; Kondo, Takaaki et al. (2018) Induction and transcriptional regulation of the co-inhibitory gene module in T cells. Nature 558:454-459
Sage, Peter T; Schildberg, Frank A; Sobel, Raymond A et al. (2018) Dendritic Cell PD-L1 Limits Autoimmunity and Follicular T Cell Differentiation and Function. J Immunol 200:2592-2602
Lu, Yunjie; Gao, Ji; Zhang, Shaopeng et al. (2018) miR-142-3p regulates autophagy by targeting ATG16L1 in thymic-derived regulatory T cell (tTreg). Cell Death Dis 9:290
Dixon, Karen O; Schorer, Michelle; Nevin, James et al. (2018) Functional Anti-TIGIT Antibodies Regulate Development of Autoimmunity and Antitumor Immunity. J Immunol 200:3000-3007
Fan, Martin Y; Turka, Laurence A (2018) Immunometabolism and PI(3)K Signaling As a Link between IL-2, Foxp3 Expression, and Suppressor Function in Regulatory T Cells. Front Immunol 9:69

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