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Deletion of AMPK minimizes graft-versus-host disease through an early impact on effector donor T cells
Darlene A. Monlish, Kevin J. Beezhold, Pailin Chiaranunt, Katelyn Paz, Nathan J. Moore, Andrea K. Dobbs, Rebecca A. Brown, John A. Ozolek, Bruce R. Blazar, Craig A. Byersdorfer
Darlene A. Monlish, Kevin J. Beezhold, Pailin Chiaranunt, Katelyn Paz, Nathan J. Moore, Andrea K. Dobbs, Rebecca A. Brown, John A. Ozolek, Bruce R. Blazar, Craig A. Byersdorfer
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Research Article Metabolism Transplantation

Deletion of AMPK minimizes graft-versus-host disease through an early impact on effector donor T cells

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Abstract

Allogeneic hematopoietic stem cell transplantation is a viable treatment for multiple hematologic diseases, but its application is often limited by graft-versus-host disease (GVHD), where donor T cells attack host tissues in the skin, liver, and gastrointestinal tract. Here, we examined the role of the cellular energy sensor AMP kinase (AMPK) in alloreactive T cells during GVHD development. Early posttransplant, AMPK activity increased more than 15-fold in allogeneic T cells, and transplantation of T cells deficient in both AMPKα1 and AMPKα2 decreased GVHD severity in multiple disease models. Importantly, a lack of AMPK lessened GVHD without compromising antileukemia responses or impairing lymphopenia-driven immune reconstitution. Mechanistically, absence of AMPK decreased both CD4+ and CD8+ effector T cell numbers as early as day 3 posttransplant, while simultaneously increasing regulatory T cell (Treg) percentages. Improvements in GVHD resulted from cell-intrinsic perturbations in conventional effector T cells as depletion of donor Tregs had minimal impact on AMPK-related improvements. Together, these results highlight a specific role for AMPK in allogeneic effector T cells early posttransplant and suggest that AMPK inhibition may be an innovative approach to mitigate GVHD while preserving graft-versus-leukemia responses and maintaining robust immune reconstitution.

Authors

Darlene A. Monlish, Kevin J. Beezhold, Pailin Chiaranunt, Katelyn Paz, Nathan J. Moore, Andrea K. Dobbs, Rebecca A. Brown, John A. Ozolek, Bruce R. Blazar, Craig A. Byersdorfer

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Figure 5

Early decreases in AMPK-dKO T cells are independent of changes in fat oxidation or autophagy.

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Early decreases in AMPK-dKO T cells are independent of changes in fat ox...
(A) WT (fl/fl) and AMPK-dKO T cells were enriched from allogeneic recipients on day 7 posttransplant and cultured overnight with 3H-palmitate, and 3H2O production was quantitated at 16 hours (n = 10–12 recipients pooled into 4 independent sets/group). (B) APL formation was quantitated with CYTO-ID staining prior to transplantation (naive), or in fl/fl versus AMPK-dKO donor T cells recovered on day 7 posttransplant (MFI, n = 3 mice/group for naive and 10 mice/group for fl/fl and AMPK-dKO). (C and D) Day 7 T cells were stimulated for 4 hours with PMA and ionomycin in the presence of brefeldin A, followed by flow cytometry determination of IFN-γ+ (C) and TNF-α+ (D) in CD4+ and CD8+ T cells (n = 5–6 mice/group). (E) One million congenically marked fl/fl donor T cells (CD90.1CD90.2) were combined with 1 × 106 AMPK-dKO T cells (CD90.2) and cotransplanted into irradiated B6D2F1 recipients. On days 3, 5, and 7 posttransplant, the percentage of fl/fl versus AMPK-dKO T cells was compared with the original input percentages (n = 7–8 mice/group at each time point). (F–H) Recipients in E were injected with BrdU 30 minutes prior to euthanization, and the percentage of BrdU+ donor cells was determined by flow cytometry on on day 3 (F), day 5 (G), and day 7 (H) (n = 7–8 mice/group at each time point). In each case, data in A–H are representative of at least 2 independent experiments. *P < 0.05 and ****P < 0.0001 by Student’s t test.

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