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PRMT5 regulates T cell interferon response and is a target for acute graft-versus-host disease
Katiri J. Snyder, Nina C. Zitzer, Yandi Gao, Hannah K. Choe, Natalie E. Sell, Lotus Neidemire-Colley, Anora Ignaci, Charuta Kale, Raymond D. Devine, Maria G. Abad, Maciej Pietrzak, Min Wang, Hong Lin, Yang W. Zhang, Gregory K. Behbehani, Jane E. Jackman, Ramiro Garzon, Kris Vaddi, Robert A. Baiocchi, Parvathi Ranganathan
Katiri J. Snyder, Nina C. Zitzer, Yandi Gao, Hannah K. Choe, Natalie E. Sell, Lotus Neidemire-Colley, Anora Ignaci, Charuta Kale, Raymond D. Devine, Maria G. Abad, Maciej Pietrzak, Min Wang, Hong Lin, Yang W. Zhang, Gregory K. Behbehani, Jane E. Jackman, Ramiro Garzon, Kris Vaddi, Robert A. Baiocchi, Parvathi Ranganathan
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Research Article Immunology Transplantation

PRMT5 regulates T cell interferon response and is a target for acute graft-versus-host disease

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Abstract

Acute graft-versus-host disease (aGVHD) is a T cell–mediated immunological disorder and the leading cause of nonrelapse mortality in patients who receive allogeneic hematopoietic cell transplants. Based on recent observations that protein arginine methyltransferase 5 (PRMT5) and arginine methylation are upregulated in activated memory T cells, we hypothesized that PRMT5 is involved in the pathogenesis of aGVHD. Here, we show that PRMT5 expression and enzymatic activity were upregulated in activated T cells in vitro and in T cells from mice developing aGVHD after allogeneic transplant. PRMT5 expression was also upregulated in T cells of patients who developed aGVHD after allogeneic hematopoietic cell transplant compared with those who did not develop aGVHD. PRMT5 inhibition using a selective small-molecule inhibitor (C220) substantially reduced mouse and human allogeneic T cell proliferation and inflammatory IFN-γ and IL-17 cytokine production. Administration of PRMT5 small-molecule inhibitors substantially improves survival, reducing disease incidence and clinical severity in mouse models of aGVHD without adversely affecting engraftment. Importantly, we show that PRMT5 inhibition retained the beneficial graft-versus-leukemia effect by maintaining cytotoxic CD8+ T cell responses. Mechanistically, we show that PRMT5 inhibition potently reduced STAT1 phosphorylation as well as transcription of proinflammatory genes, including interferon-stimulated genes and IL-17. Additionally, PRMT5 inhibition deregulates the cell cycle in activated T cells and disrupts signaling by affecting ERK1/2 phosphorylation. Thus, we have identified PRMT5 as a regulator of T cell responses and as a therapeutic target in aGVHD.

Authors

Katiri J. Snyder, Nina C. Zitzer, Yandi Gao, Hannah K. Choe, Natalie E. Sell, Lotus Neidemire-Colley, Anora Ignaci, Charuta Kale, Raymond D. Devine, Maria G. Abad, Maciej Pietrzak, Min Wang, Hong Lin, Yang W. Zhang, Gregory K. Behbehani, Jane E. Jackman, Ramiro Garzon, Kris Vaddi, Robert A. Baiocchi, Parvathi Ranganathan

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Figure 7

Inhibition PRMT5 deregulates cell cycle and ERK signaling in mouse and human T cells.

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Inhibition PRMT5 deregulates cell cycle and ERK signaling in mouse and h...
(A) Murine CD3+ T cells stimulated with CD3/CD28 Dynabeads ± C220 for 48 hours. Cell cycle analysis based on PI incorporation. Representative propidium iodide (PI) histogram of 1 experiment. (B) Percentage of T cells in G0/G1, S, and G2/M phases. Mean ± SD of biological triplicates of 2 independent experiments. Significance was determined using 2-tailed t test with Holm-Šídák correction for multiple comparisons. (C) Healthy donor T cells were stimulated with CD3/CD28 beads for 48 hours ± C220 (100 nM). Cells were labeled with IdU for 15 minutes at the end before collection for analysis by mass cytometry. Percentage of Ki-67+Idu+ T cells of 4 individual donors. (D) PBMCs were pretreated with DMSO or C220 (100 nM) for 2 hours and stimulated with PMA/ionomycin for 5 minutes. Phosphorylation of ERK1/2 on CD3+ T cells analyzed by flow cytometry. Histogram of 2 representative donors. (E) MFI of phospho-ERK1/2 and total ERK1/2 in 7 donors. **P < 0.01; ***P < 0.001.

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