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PD-1 Expression during Acute Infection Is Repressed through an LSD1-Blimp-1 Axis
Alexander P R Bally1,2, Dennis K Neeld1,2, Peiyuan Lu1,2
1Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, GA 30322; and.
Abstract:
During prolonged exposure to Ags, such as chronic viral infections, sustained TCR signaling can result in T cell exhaustion mediated in part by expression of programmed cell death-1 (PD-1) encoded by the Pdcd1 gene. In this study, dynamic changes in histone H3K4 modifications at the Pdcd1 locus during ex vivo and in vivo activation of CD8 T cells suggested a potential role for the histone H3 lysine 4 demethylase LSD1 in regulating PD-1 expression. CD8 T cells lacking LSD1 expressed higher levels of Pdcd1 mRNA following ex vivo stimulation as well as increased surface levels of PD-1 during acute, but not chronic, infection with lymphocytic choriomeningitis virus (LCMV). Blimp-1, a known repressor of PD-1, recruited LSD1 to the Pdcd1 gene during acute, but not chronic, LCMV infection. Loss of DNA methylation at Pdcd1's promoter-proximal regulatory regions is highly correlated with its expression. However, following acute LCMV infection, in which PD-1 expression levels return to near baseline, LSD1-deficient CD8 T cells failed to remethylate the Pdcd1 locus to the levels of wild-type cells. Finally, in a murine melanoma model, the frequency of PD-1-expressing tumor-infiltrating LSD1-deficient CD8 T cells was greater than in wild type. Thus, LSD1 is recruited to the Pdcd1 locus by Blimp-1, downregulates PD-1 expression by facilitating the removal of activating histone marks, and is important for remethylation of the locus. Together, these data provide insight into the complex regulatory mechanisms governing T cell immunity and regulation of a critical T cell checkpoint gene.
Insights
Lysine demethylase LSD1 regulates T cell exhaustion by controlling programmed cell death-1 (PD-1) expression. LSD1
Area of Science:
- Immunology
- Molecular Biology
- Epigenetics
Background:
- Sustained T cell receptor (TCR) signaling during chronic infections can lead to T cell exhaustion, partly via programmed cell death-1 (PD-1) expression.
- The epigenetic regulation of PD-1 (encoded by the Pdcd1 gene) in CD8 T cells is not fully understood.
Purpose of the Study:
- To investigate the role of histone H3 lysine 4 (H3K4) demethylase LSD1 in regulating PD-1 expression during CD8 T cell activation and exhaustion.
- To elucidate the mechanisms by which LSD1 controls Pdcd1 gene expression.
Main Methods:
- Analysis of histone H3K4 modifications at the Pdcd1 locus in activated CD8 T cells.
- Assessment of PD-1 mRNA and surface protein levels in wild-type and LSD1-deficient CD8 T cells during viral infections (LCMV) and in a melanoma model.
- Investigation of Blimp-1 recruitment of LSD1 to the Pdcd1 gene.
- Analysis of DNA methylation status at the Pdcd1 locus.
Main Results:
- LSD1 deficiency led to increased Pdcd1 mRNA and PD-1 surface levels in CD8 T cells during acute LCMV infection.
- Blimp-1 recruited LSD1 to the Pdcd1 gene during acute LCMV infection, facilitating PD-1 downregulation.
- LSD1-deficient cells showed impaired remethylation of the Pdcd1 locus after acute infection.
- Increased PD-1 expression was observed on tumor-infiltrating LSD1-deficient CD8 T cells in a murine melanoma model.
Conclusions:
- LSD1, recruited by Blimp-1, downregulates PD-1 expression by removing activating histone marks and is crucial for locus remethylation.
- LSD1 plays a significant role in regulating T cell exhaustion and PD-1 expression, impacting anti-tumor immunity.
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