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February 1, 2018Cell1,858 citationsOpen Access

NK Cells Stimulate Recruitment of cDC1 into the Tumor Microenvironment Promoting Cancer Immune Control

JBJan P. BöttcherEBEduardo BonavitaPCProbir Chakravarty

Key Points

  • To identify the mechanisms governing conventional type 1 dendritic cell (cDC1) recruitment into tumors and investigate how tumor factors subvert this pathway.
  • Assessed mouse tumor models to evaluate natural killer (NK) cell-dependent production of chemokines CCL5 and XCL1 and their role in cDC1 accumulation.
  • Analyzed human tumor transcriptomic datasets for associations between NK and cDC1 gene signatures, chemokine levels (CCL5, XCL1, XCL2), and patient overall survival.
  • Examined the mechanistic impact of tumor-derived prostaglandin E2 (PGE2) on NK cell viability, chemokine secretion, and cDC1 chemokine receptor expression.
  • Intratumoral cDC1 accumulation depended on NK cell-derived CCL5 and XCL1 in mouse models, matching human cancer data where these chemokines correlated with NK/cDC1 signatures and prolonged overall survival.
  • Tumor-derived PGE2 facilitated immune evasion by reducing NK cell viability, halting chemokine production, and downregulating chemokine receptor expression on cDC1s.

Abstract

Conventional type 1 dendritic cells (cDC1) are critical for antitumor immunity, and their abundance within tumors is associated with immune-mediated rejection and the success of immunotherapy. Here, we show that cDC1 accumulation in mouse tumors often depends on natural killer (NK) cells that produce the cDC1 chemoattractants CCL5 and XCL1. Similarly, in human cancers, intratumoral CCL5, XCL1, and XCL2 transcripts closely correlate with gene signatures of both NK cells and cDC1 and are associated with increased overall patient survival. Notably, tumor production of prostaglandin E2 (PGE2) leads to evasion of the NK cell-cDC1 axis in part by impairing NK cell viability and chemokine production, as well as by causing downregulation of chemokine receptor expression in cDC1. Our findings reveal a cellular and molecular checkpoint for intratumoral cDC1 recruitment that is targeted by tumor-derived PGE2 for immune evasion and that could be exploited for cancer therapy.

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Cite This Study

Böttcher et al. (2018) studied this question.

synapsesocial.com/papers/69d8ca2dd2f7327e70ae4454https://doi.org/10.1016/j.cell.2018.01.004
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