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Dormant tumors circumvent tumor-specific adaptive immunity by establishing a Treg-dominated niche via DKK3
Timothy N. Trotter, Carina E. Dagotto, Delila Serra, Tao Wang, Xiao Yang, Chaitanya R. Acharya, Junping Wei, Gangjun Lei, H. Kim Lyerly, Zachary C. Hartman
Timothy N. Trotter, Carina E. Dagotto, Delila Serra, Tao Wang, Xiao Yang, Chaitanya R. Acharya, Junping Wei, Gangjun Lei, H. Kim Lyerly, Zachary C. Hartman
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Research Article Immunology Oncology

Dormant tumors circumvent tumor-specific adaptive immunity by establishing a Treg-dominated niche via DKK3

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Abstract

Approximately 30% of breast cancer survivors deemed free of disease will experience locoregional or metastatic recurrence even up to 30 years after initial diagnosis, yet how residual/dormant tumor cells escape immunity elicited by the primary tumor remains unclear. We demonstrate that intrinsically dormant tumor cells are indeed recognized and lysed by antigen-specific T cells in vitro and elicit robust immune responses in vivo. However, despite close proximity to CD8+ killer T cells, dormant tumor cells themselves support early accumulation of protective FoxP3+ T regulatory cells (Tregs), which can be targeted to reduce tumor burden. These intrinsically dormant tumor cells maintain a hybrid epithelial/mesenchymal state that is associated with immune dysfunction, and we find that the tumor-derived, stem cell/basal cell protein Dickkopf WNT signaling pathway inhibitor 3 (DKK3) is critical for Treg inhibition of CD8+ T cells. We also demonstrate that DKK3 promotes immune-mediated progression of proliferative tumors and is significantly associated with poor survival and immunosuppression in human breast cancers. Together, these findings reveal that latent tumors can use fundamental mechanisms of tolerance to alter the T cell microenvironment and subvert immune detection. Thus, targeting these pathways, such as DKK3, may help render dormant tumors susceptible to immunotherapies.

Authors

Timothy N. Trotter, Carina E. Dagotto, Delila Serra, Tao Wang, Xiao Yang, Chaitanya R. Acharya, Junping Wei, Gangjun Lei, H. Kim Lyerly, Zachary C. Hartman

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Figure 6

D2.1-derived DKK3 is essential for tumor persistence and mediates T cell fate/function.

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D2.1-derived DKK3 is essential for tumor persistence and mediates T cell...
(A) Differential expression analysis of D2.1 vs. D2A1 tumors in BALB/c animals from Figure 2. Dkk3 is highlighted with an empty circle (log2[fold change] = 4.97; Padj = 3.14 × 10–108). (B) Normalized counts of Dkk3 from bulk RNA-seq of D2.1 or D2A1 tumors implanted into BALB/c or SCID-beige animals. Counts were compared by 1-way ANOVA with Holm-Šídák multiple-comparison test. (C) Quantitative PCR of Dkk3 transcripts in samples from B. P values by 1-way ANOVA with Holm-Šídák multiple-comparison test. (D) Growth of 1 × 106 D2.1 cells expressing shScramble (n = 6) or shDKK3 (n = 8) vectors in the mammary fat pad (MFP) of BALB/c mice. (E) Growth of 1 × 106 D2.1 control (n = 10) or 2 independent DKK3-KO lines (n = 5 each) in the MFP of BALB/c mice. Statistical comparisons were by 2-way ANOVA at end of experiment (D and E). (F) Growth of D2.1 control or DKK3-KO cells (n = 5 each) in the MFP of SCID-beige mice. (G) Bead-isolated Jedi CD8+ cells were cultured in D2.1 shScramble or shDKK3 CM with antigen-presenting cells (APCs) and eGFP200–208 peptide. Representative flow plot (left) and quantification (right) of CD8+ cell divisions in D2.1 CM are shown. (H) Jedi CD8+ cells cultured as in G with the addition of equal numbers of bead-isolated CD4+ cells. (I) Representative plots of CD4+ and CD8+ cells (gated on CD45+; left) and quantification (right) of CD4+ cells among CD45+ cells in D2.1 CM. (J) Representative plots (left) and quantification of Tregs in D2.1 CM. (K) CD8+ cell/Treg ratio after culture in D2.1 CM. (L) IFN-γ ELISA after T cell culture in D2.1 CM. Statistical comparisons were performed by 2-tailed t test (I–K), 1-way ANOVA with Tukey’s correction (L), or Šídák’s 2-way ANOVA (G and H). Data are presented as mean ± SEM.

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