IFI16/Ifi202 released from breast cancer induces secretion of inflammatory cytokines from macrophages and promotes tumor growth

Author:

Lim Ga Young1ORCID,Cho Sun Wook234,Ka Na‐Lee15,Lee Kyung‐Hun26,Im Seock‐Ah236,Kim Seung‐Su1,Hwang Sewon1,Lee Mi‐Ock157

Affiliation:

1. College of Pharmacy Seoul National University Seoul South Korea

2. Department of Internal Medicine Seoul National University Hospital Seoul South Korea

3. Department of Internal Medicine Seoul National University College of Medicine Seoul South Korea

4. Cellus Inc. Daegu South Korea

5. Research Institute of Pharmaceutical Sciences Seoul National University Seoul South Korea

6. Cancer Research Institute Seoul National University Seoul South Korea

7. Bio‐MAX institute Seoul National University Seoul South Korea

Abstract

AbstractIn tumor microenvironment (TME), macrophages trigger and maintain inflammatory responses that promoting tumor progression. Many cellular proteins are secreted from tumors and modulate their own TME by modulating macrophage phenotypes. Recently, we reported that interferon‐γ‐inducible protein 16 (IFI16), which was identified as an innate immune DNA sensor recognizing foreign DNA, triggered type Ⅰ interferon responses in breast cancer (BC). However, whether IFI16 was released from BC and affects TME has not been studied. Here, we report that IFI16 and its mouse homolog Ifi202 were released from BC cells, but not from normal epithelial cells. Ifi202 induced secretion of proinflammatory cytokines such as Interleukin (IL)‐1β, IL‐6, and Tumor necrosis factor‐α from macrophages via binding toll‐like receptor 2 and activating downstream signaling pathway. Growth of allografted mouse BC 4T1 lacking Ifi202 was suppressed and accompanied with increased infiltration and cytotoxic activity of CD8+ T lymphocytes. Further, IFI16 was detected in sera of patients with BC. High expression level of IFI16 was associated with poor prognosis in patients with BC. Taken together, our findings suggest a novel role of IFI16/Ifi202 in TME, that elicits tumor promoting inflammation and thereby shaping immunosuppressive TME in BC.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Cell Biology,Clinical Biochemistry,Physiology

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