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Tumor-secreted Pros1 inhibits macrophage M1 polarization to reduce antitumor immune response
Eric Ubil, Laura Caskey, Alisha Holtzhausen, Debra Hunter, Charlotte Story, H. Shelton Earp
Eric Ubil, Laura Caskey, Alisha Holtzhausen, Debra Hunter, Charlotte Story, H. Shelton Earp
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Research Article Cell biology Immunology

Tumor-secreted Pros1 inhibits macrophage M1 polarization to reduce antitumor immune response

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Abstract

Tyro3, Axl, Mer (TAM) receptor tyrosine kinases reduce inflammatory, innate immune responses. We demonstrate that tumor-secreted protein S (Pros1), a Mer/Tyro3 ligand, decreased macrophage M1 cytokine expression in vitro and in vivo. In contrast, tumor cells with CRISPR-based deletion of Pros1 failed to inhibit M1 polarization. Tumor cell–associated Pros1 action was abrogated in macrophages from Mer- and Tyro3- but not Axl-KO mice. In addition, several other murine and human tumor cell lines suppressed macrophage M1 cytokine expression induced by IFN-γ and LPS. Investigation of the suppressive pathway demonstrated a role for PTP1b complexing with Mer. Substantiating the role of PTP1b, M1 cytokine suppression was also lost in macrophages from PTP1b-KO mice. Mice bearing Pros1-deficient tumors showed increased innate and adaptive immune infiltration, as well as increased median survival. TAM activation can also inhibit TLR-mediated M1 polarization. Treatment with resiquimod, a TLR7/8 agonist, did not improve survival in mice bearing Pros1-secreting tumors but doubled survival for Pros1-deleted tumors. The tumor-derived Pros1 immune suppressive system, like PD-L1, was cytokine responsive, with IFN-γ inducing Pros1 transcription and secretion. Inhibition of Pros1/TAM interaction represents a potential novel strategy to block tumor-derived immune suppression.

Authors

Eric Ubil, Laura Caskey, Alisha Holtzhausen, Debra Hunter, Charlotte Story, H. Shelton Earp

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Figure 7

Tumor-secreted Pros1 inhibition of M1-associated gene expression in a Mer/Tyro3-dependent manner.

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Tumor-secreted Pros1 inhibition of M1-associated gene expression in a Me...
Proposed signaling model. Left: IFN-γ+LPS stimulate transcription of macrophage M1 cytokines IL1 and IL6 in a p38α-dependent manner. Middle: Tumor-derived Pros1 initiates Mer-dependent ternary complex formation, sequestering p38α and suppressing IL1 and IL6 transcription by alternative mechanisms. Right: p38α sequestration is reversed in the presence of PTP1b inhibitors, and M1 gene expression is restored.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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