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TSC2-deficient tumors have evidence of T cell exhaustion and respond to anti–PD-1/anti–CTLA-4 immunotherapy
Heng-Jia Liu, Patrick H. Lizotte, Heng Du, Maria C. Speranza, Hilaire C. Lam, Spencer Vaughan, Nicola Alesi, Kwok-Kin Wong, Gordon J. Freeman, Arlene H. Sharpe, Elizabeth P. Henske
Heng-Jia Liu, Patrick H. Lizotte, Heng Du, Maria C. Speranza, Hilaire C. Lam, Spencer Vaughan, Nicola Alesi, Kwok-Kin Wong, Gordon J. Freeman, Arlene H. Sharpe, Elizabeth P. Henske
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Research Article Oncology

TSC2-deficient tumors have evidence of T cell exhaustion and respond to anti–PD-1/anti–CTLA-4 immunotherapy

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Abstract

Tuberous sclerosis complex (TSC) is an incurable multisystem disease characterized by mTORC1-hyperactive tumors. TSC1/2 mutations also occur in other neoplastic disorders, including lymphangioleiomyomatosis (LAM) and bladder cancer. Whether TSC-associated tumors will respond to immunotherapy is unknown. We report here that the programmed death 1 coinhibitory receptor (PD-1) is upregulated on T cells in renal angiomyolipomas (AML) and pulmonary lymphangioleiomyomatosis (LAM). In C57BL/6J mice injected with syngeneic TSC2-deficient cells, anti–PD-1 alone decreased 105K tumor growth by 67% (P < 0.0001); the combination of PD-1 and CTLA-4 blockade was even more effective in suppressing tumor growth. Anti–PD-1 induced complete rejection of TSC2-deficient 105K tumors in 37% of mice (P < 0.05). Double blockade of PD-1 and CTLA-4 induced rejection in 62% of mice (P < 0.01). TSC2 reexpression in TSC2-deficient TMKOC cells enhanced antitumor immunity by increasing T cell infiltration and production of IFN-γ/TNF-α by T cells, suggesting that TSC2 and mTORC1 play specific roles in the induction of antitumor immunity. Finally, 1 month of anti–PD-1 blockade reduced renal tumor burden by 53% (P < 0.01) in genetically engineered Tsc2+/– mice. Taken together, these data demonstrate for the first time to our knowledge that checkpoint blockade may have clinical efficacy for TSC and LAM, and possibly other benign tumor syndromes, potentially yielding complete and durable clinical responses.

Authors

Heng-Jia Liu, Patrick H. Lizotte, Heng Du, Maria C. Speranza, Hilaire C. Lam, Spencer Vaughan, Nicola Alesi, Kwok-Kin Wong, Gordon J. Freeman, Arlene H. Sharpe, Elizabeth P. Henske

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Figure 4

PD-1 and CTLA-4 combination blockade decreases the percentage of Foxp3+CD4+ Tregs and increases the CD8/Treg and CD4/Treg ratio in TSC2-deficient tumors.

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PD-1 and CTLA-4 combination blockade decreases the percentage of Foxp3+C...
(A) Flow cytometry quantification of tumor-infiltrating Foxp3+CD4+ Tregs in TSC2-deficient 105K tumors (left) and TSC2-deficient TMKOC tumors (right) obtained 24 hours following the last treatment, as illustrated in Figure 2A. (B) Ratios of CD8+ T cells to Tregs and CD4+ T cells to Tregs within 105K tumors (left) and TSC2-deficient TMKOC tumors (right) are shown (n = 6–8 per group). Data are presented as mean ± SD. Statistical significance was determined by nonparametric 1-way ANOVA followed by Dunn’s multiple comparison test. *P < 0.05.

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