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Maintenance DNA methylation is required for induced Treg reparative function following viral pneumonia in mice
Anthony M. Joudi, Jonathan K. Gurkan, Qianli Liu, Elizabeth M. Steinert, Manuel A. Torres Acosta, Kathryn A. Helmin, Luisa Morales-Nebreda, Nurbek Mambetsariev, Carla Patricia Reyes Flores, Hiam Abdala-Valencia, Samuel E. Weinberg, Benjamin D. Singer
Anthony M. Joudi, Jonathan K. Gurkan, Qianli Liu, Elizabeth M. Steinert, Manuel A. Torres Acosta, Kathryn A. Helmin, Luisa Morales-Nebreda, Nurbek Mambetsariev, Carla Patricia Reyes Flores, Hiam Abdala-Valencia, Samuel E. Weinberg, Benjamin D. Singer
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Research Article Immunology Inflammation Pulmonology

Maintenance DNA methylation is required for induced Treg reparative function following viral pneumonia in mice

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Abstract

FOXP3+ natural regulatory T cells (nTregs) promote resolution of inflammation and repair of epithelial damage following viral pneumonia–induced lung injury, thus representing a cellular therapy for patients with severe viral pneumonia and the acute respiratory distress syndrome. Whether in vitro–induced Tregs (iTregs), which can be rapidly generated in substantial numbers from conventional T cells, also promote lung recovery is unknown. nTregs require specific DNA methylation patterns maintained by the epigenetic regulator ubiquitin-like with PHD and RING finger domains 1 (UHRF1). Here, we tested whether iTregs promote recovery following viral pneumonia and whether iTregs require UHRF1 for their pro-recovery function. We found that adoptive transfer of iTregs to mice with influenza virus pneumonia promotes lung recovery and that loss of UHRF1-mediated maintenance DNA methylation in iTregs leads to reduced engraftment and a delayed repair response. Transcriptional and DNA methylation profiling of adoptively transferred UHRF1-deficient iTregs that had trafficked to influenza-injured lungs demonstrated transcriptional instability with gain of transcription factors that define effector T cell lineage. Strategies to promote the stability of iTregs could be leveraged to further augment their pro-recovery function during viral pneumonia and other causes of severe lung injury.

Authors

Anthony M. Joudi, Jonathan K. Gurkan, Qianli Liu, Elizabeth M. Steinert, Manuel A. Torres Acosta, Kathryn A. Helmin, Luisa Morales-Nebreda, Nurbek Mambetsariev, Carla Patricia Reyes Flores, Hiam Abdala-Valencia, Samuel E. Weinberg, Benjamin D. Singer

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Figure 3

Loss of UHRF1 is sufficient to impair repair capabilities of iTregs during viral pneumonia.

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Loss of UHRF1 is sufficient to impair repair capabilities of iTregs duri...
Foxp3GFP-DTR mice were treated with DTx every 48 hours beginning 2 days before inoculation with 6.5 PFU of influenza A/WSN/33 H1N1 virus, and then received retro-orbital adoptive transfer of 1 × 106 Uhrf1fl/fl or Uhrf1+/+ iTregs at 5 DPI as in Figure 1. iTregs were treated with tamoxifen from culture day 0 to day 3 and harvested for adoptive transfer on culture day 5. Mice were euthanized 24 DPI, and lungs were analyzed by flow cytometry. Epithelial cell data are derived from post-caval lobes. (A) Survival of Foxp3GFP-DTR mice that received Uhrf1+/+ or Uhrf1fl/fl iTregs. (B) SpO2 over time in mice from A. (C and D) CD326+CD31– cell frequency (C) and total number (D). (E and F) CD326+MHCII+T1A– cell frequency (E) and total number (F). (G and H) KRT5+CD326+ cell frequency (G) and total number (H). (I and J) Ki-67+CD326+MHCII+ cell frequency (I) and total number (J). (A and B, Uhrf1+/+ iTreg recipients n = 18, Uhrf1fl/fl iTreg recipients n = 15; C–F, Uhrf1+/+ iTreg recipients n = 9, Uhrf1fl/fl iTreg recipients n = 6; G and H, Uhrf1+/+ iTreg recipients n = 7, Uhrf1fl/fl iTreg recipients n = 6; I and J, Uhrf1+/+ iTreg recipients n = 9, Uhrf1fl/fl iTreg recipients n = 6.) Survival curve (A) P value was determined using log-rank (Mantel-Cox) test, *P < 0.05. *P < 0.05 or *q < 0.05 according to mixed-effects model (restricted maximum likelihood) with 2-stage linear step-up procedure of Benjamini, Krieger, and Yekutieli with Q = 5% (B). Data presented as mean and SD with *P < 0.05, **P < 0.005 according to Mann-Whitney U test (C–J). Data from recipients of Uhrf1+/+ iTregs are re-presented from results shown in Figure 1 and were generated in contemporaneous experiments as the data generated from mice that received Uhrf1fl/fl iTregs. Data in A and B generated from 4 independent experiments. Data in C–J generated from 2 independent experiments.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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