4.6 Article

Inflammatory and mitogenic signals drive interleukin 23 subunit alpha (IL23A) secretion independent of IL12B in intestinal epithelial cells

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 295, 期 19, 页码 6387-6400

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA120.012943

关键词

cytokine induction; inflammation; colorectal cancer; intestinal epithelium; mitogen-activated protein kinase (MAPK); IL23A; MAPK; NF-?B; RUNX; IL23A secretion; intestinal epithelial cells; mitogenic signal; carcinogenesis; non-canonical IL-23; innate immunity; cytokine signaling

资金

  1. Ministry of Education Academic Research Fund (AcRF) Tier 2 Grant [MOE2014-T2-2-143]
  2. Ministry of Education, Culture, Sports, Science and Technology of Japan [JP18K07228]
  3. Institute for Frontier Science Initiative, Kanazawa University, inter-disciplinary research grant

向作者/读者索取更多资源

The heterodimeric cytokine interleukin-23 (IL-23 or IL23A/IL12B) is produced by dendritic cells and macrophages and promotes the proinflammatory and regenerative activities of T helper 17 (Th17) and innate lymphoid cells. A recent study has reported that IL-23 is also secreted by lung adenoma cells and generates an inflammatory and immune-suppressed stroma. Here, we observed that proinflammatory tumor necrosis factor (TNF)/NF-?B and mitogen-activated protein kinase (MAPK) signaling strongly induce IL23A expression in intestinal epithelial cells. Moreover, we identified a strong crosstalk between the NF-?B and MAPK/ERK kinase (MEK) pathways, involving the formation of a transcriptional enhancer complex consisting of proto-oncogene c-Jun (c-Jun), RELA proto-oncogene NF-?B subunit (RelA), RUNX family transcription factor 1 (RUNX1), and RUNX3. Collectively, these proteins induced IL23A secretion, confirmed by immunoprecipitation of endogenous IL23A from activated human colorectal cancer (CRC) cell culture supernatants. Interestingly, IL23A was likely secreted in a noncanonical form, as it was not detected by an ELISA specific for heterodimeric IL-23 likely because IL12B expression is absent in CRC cells. Given recent evidence that IL23A promotes tumor formation, we evaluated the efficacy of MAPK/NF-?B inhibitors in attenuating IL23A expression and found that the MEK inhibitor trametinib and BAY 11?7082 (an IKK?/I?B inhibitor) effectively inhibited IL23A in a subset of human CRC lines with mutant KRAS or BRAFV600E mutations. Together, these results indicate that proinflammatory and mitogenic signals dynamically regulate IL23A in epithelial cells. They further reveal its secretion in a noncanonical form independent of IL12B and that small-molecule inhibitors can attenuate IL23A secretion.

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