4.7 Article

YAP Is Essential for Treg-Mediated Suppression of Antitumor Immunity

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CANCER DISCOVERY
卷 8, 期 8, 页码 1026-1043

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/2159-8290.CD-17-1124

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资金

  1. Bloomberg-Kimmel Institute (Immunometabolism Program & Immune Modulation Program)
  2. Melanoma Research Alliance
  3. NIH [RO1AI099300, RO1AI089830, R01AI137046]
  4. DoD [PC130767]
  5. Melanoma Research Foundation
  6. Phi Beta Psi
  7. Roswell Park Alliance Foundation
  8. NCI [P30CA016056]
  9. National Natural Science Committee of China [81725004]
  10. Shanghai Science and Technology Committee [16410723600]
  11. National Natural Science Fund of China [81571564, 1521004, 81522020]
  12. Foundation of Jiangsu Collaborative Innovation Center of Biomedical Functional Materials

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Regulatory T cells (Treg) are critical for maintaining self-tolerance and immune homeostasis, but their suppressive function can impede effective antitumor immune responses. FOXP3 is a transcription factor expressed in Tregs that is required for their function. However, the pathways and microenvironmental cues governing FOXP3 expression and Treg function are not completely understood. Herein, we report that YAP, a coactivator of the Hippo pathway, is highly expressed in Tregs and bolsters FOXP3 expression and Treg function in vitro and in vivo. This potentiation stemmed from YAP-dependent upregulation of activin signaling, which amplifies TGF ss/SMAD activation in Tregs. YAP deficiency resulted in dysfunctional Tregs unable to suppress antitumor immunity or promote tumor growth in mice. Chemical YAP antagonism and knockout or blockade of the YAP-regulated activin receptor similarly improved antitumor immunity. Thus, we identify YAP as an unexpected amplifi er of a Treg-reinforcing pathway with significant potential as an anticancer immunotherapeutic target. SIGNIFICANCE: Tregs suppress antitumor immunity, and pathways supporting their function can be novel immunotherapy targets. Here, the selective expression of YAP by Tregs, its importance for their function, and its unexpected enhancement of pro-Treg Activin/SMAD signaling are reported, as are validations of potential cancer-fighting antagonists of YAP and its regulatory targets. (c) 2018 AACR.

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