Interleukin-31 and oncostatin-M mediate distinct signaling reactions and response patterns in lung epithelial cells
Souvik Chattopadhyay1, Erin Tracy, Ping Liang
1Department of Molecular and Cellular Biology and Cancer Genetics, Roswell Park Cancer Institute, Buffalo, New York 14263, USA.
Abstract:
Lung epithelial cells are primary targets of oncostatin M (OSM) and, to a lower degree, of interleukin (IL)-6 and IL-31, all members of the IL-6 cytokine family. The OSM receptor (OSMR) signals through activation of STAT and mitogen-activated protein kinase pathways to induce genes encoding differentiated cell functions, reduce cell-cell interaction, and suppress cell proliferation. IL-31 functions through the heteromeric IL-31 receptor, which shares with OSMR the OSMRbeta subunit, but does not engage gp130, the common subunit of all other IL-6 cytokine receptors. Because the response of epithelial cells to IL-31 is unknown, the action of IL-31 was characterized in the human alveolar epithelial cell line A549 in which the expression of the ligand-binding IL-31Ralpha subunit was increased. IL-31 initiated signaling that differed from other IL-6 cytokines by the particularly strong recruitment of the STAT3, ERK, JNK, and Akt pathways. IL-31 was highly effective in suppressing proliferation by altering expression of cell cycle proteins, including up-regulation of p27(Kip1) and down-regulation of cyclin B1, CDC2, CDK6, MCM4, and retinoblastoma. A single STAT3 recruitment site (Tyr-721) in the cytoplasmic domain of IL-31Ralpha exerts a dominant function in the entire receptor complex and is critical for gene induction, morphological changes, and growth inhibition. The data suggest that inflammatory and immune reactions involving activated T-cells regulate functions of epithelial cells by IL-6 cytokines through receptor-defined signaling reactions.
Insights
Interleukin-31 (IL-31) significantly inhibits lung epithelial cell proliferation by activating specific signaling pathways. This cytokine
Area of Science:
- Cell Biology
- Immunology
- Molecular Biology
Background:
- Lung epithelial cells are targeted by oncostatin M (OSM), IL-6, and IL-31, part of the IL-6 cytokine family.
- OSM receptor (OSMR) signaling impacts cell function, interaction, and proliferation.
- The epithelial cell response to IL-31 was previously unknown.
Purpose of the Study:
- To characterize the action of IL-31 on human alveolar epithelial cells.
- To understand the signaling pathways and effects of IL-31 in these cells.
Main Methods:
- Utilized the human alveolar epithelial cell line A549.
- Increased expression of the IL-31 receptor alpha (IL-31Rα) subunit.
- Analyzed STAT3, ERK, JNK, and Akt pathway activation.
- Assessed changes in cell cycle proteins and proliferation.
Main Results:
- IL-31 activated STAT3, ERK, JNK, and Akt pathways distinctively.
- IL-31 strongly suppressed cell proliferation by altering cell cycle proteins (e.g., up-regulating p27Kip1, down-regulating cyclin B1).
- A single STAT3 recruitment site (Tyr-721) on IL-31Rα was critical for IL-31's effects.
Conclusions:
- IL-31 signaling in epithelial cells differs from other IL-6 cytokines.
- IL-31 plays a significant role in regulating epithelial cell function and proliferation.
- Receptor-defined signaling reactions mediate epithelial cell responses to IL-6 cytokines during inflammation.
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