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TNFR2/14-3-3ε signaling complex instructs macrophage plasticity in inflammation and autoimmunity
Wenyu Fu, Wenhuo Hu, Young-Su Yi, Aubryanna Hettinghouse, Guodong Sun, Yufei Bi, Wenjun He, Lei Zhang, Guanmin Gao, Jody Liu, Kazuhito Toyo-oka, Guozhi Xiao, David B. Solit, Png Loke, Chuan-ju Liu
Wenyu Fu, Wenhuo Hu, Young-Su Yi, Aubryanna Hettinghouse, Guodong Sun, Yufei Bi, Wenjun He, Lei Zhang, Guanmin Gao, Jody Liu, Kazuhito Toyo-oka, Guozhi Xiao, David B. Solit, Png Loke, Chuan-ju Liu
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Research Article Autoimmunity Inflammation

TNFR2/14-3-3ε signaling complex instructs macrophage plasticity in inflammation and autoimmunity

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Abstract

TNFR1 and TNFR2 have received prominent attention because of their dominance in the pathogenesis of inflammation and autoimmunity. TNFR1 has been extensively studied and primarily mediates inflammation. TNFR2 remains far less studied, although emerging evidence demonstrates that TNFR2 plays an antiinflammatory and immunoregulatory role in various conditions and diseases. Herein, we report that TNFR2 regulates macrophage polarization, a highly dynamic process controlled by largely unidentified intracellular regulators. Using biochemical copurification and mass spectrometry approaches, we isolated the signaling molecule 14-3-3ε as a component of TNFR2 complexes in response to progranulin stimulation in macrophages. In addition, 14-3-3ε was essential for TNFR2 signaling–mediated regulation of macrophage polarization and switch. Both global and myeloid-specific deletion of 14-3-3ε resulted in exacerbated inflammatory arthritis and counteracted the protective effects of progranulin-mediated TNFR2 activation against inflammation and autoimmunity. TNFR2/14-3-3ε signaled through PI3K/Akt/mTOR to restrict NF-κB activation while simultaneously stimulating C/EBPβ activation, thereby instructing macrophage plasticity. Collectively, this study identifies 14-3-3ε as a previously unrecognized vital component of the TNFR2 receptor complex and provides new insights into the TNFR2 signaling, particularly its role in macrophage polarization with therapeutic implications for various inflammatory and autoimmune diseases with activation of the TNFR2/14-3-3ε antiinflammatory pathway.

Authors

Wenyu Fu, Wenhuo Hu, Young-Su Yi, Aubryanna Hettinghouse, Guodong Sun, Yufei Bi, Wenjun He, Lei Zhang, Guanmin Gao, Jody Liu, Kazuhito Toyo-oka, Guozhi Xiao, David B. Solit, Png Loke, Chuan-ju Liu

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Figure 2

Activation of TNFR2 recruits 14-3-3ε during macrophage polarization.

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Activation of TNFR2 recruits 14-3-3ε during macrophage polarization.
(A)...
(A) Experimental design to identify potential molecules binding to TNFR2ICD upon PGRN stimulation. Summary of the hits that were specifically recruited to activated TNFR2 complexes in Raw264.7 macrophages. (B) Efficient ablation of 14-3-3ε in 14-3-3εLysM BMDMs, assayed by Western blotting. (C) Immunoprecipitation from 14-3-3εfl/fl or 14-3-3εLysM BMDMs with 14-3-3ε antibody and detection of TNFR2 and 14-3-3ε by immunoblotting. Results shown are representative of 3 biological replicates. (D–G) 14-3-3εfl/fl and 14-3-3εLysM BMDMs were polarized to M1 (LPS/IFN-γ) or M2 (IL-4) with or without 0.5 μg/mL PGRN for 18 hours, qPCR was performed to measure the expression of Il6 (D), Nos2 (E), Arg1 (F), and Mgl1 (G). (H–K) 14-3-3εfl/fl and 14-3-3εLysM BMDMs were polarized to M2 (IL-4) or M1 (LPS/IFN-γ) for 18 hours, then M2 macrophages were treated with M1 stimuli (LPS/IFN-γ) while M1 macrophages were treated with M2 stimuli (IL-4) for an additional 18 hours. qPCR was performed to measure the expression of Il6 (H) and Nos2 (I) in M2 macrophages polarized to M1; expression of Arg1 (J) and Mgl1 (K) was measured in M1 macrophages polarized to M2. In D–K, data are mean ± SD; n = 4 biological replicates; significant difference was analyzed by 1-way ANOVA with Bonferroni’s post hoc test; **P < 0.01.

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

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