Lysophosphatidylserine Induces MUC5AC Production via the Feedforward Regulation of the TACE-EGFR-ERK Pathway in Airway Epithelial Cells in a Receptor-Independent Manner

  • Sim, Myeong Seong
  • Kim, Hye Jeong
  • Jo, Sang Hee
  • Kim, Chun
  • Chung, Il Yup
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초록

Lysophosphatidylserine (LysoPS) is an amphipathic lysophospholipid that mediates a broad spectrum of inflammatory responses through a poorly characterized mechanism. Because LysoPS levels can rise in a variety of pathological conditions, we sought to investigate LysoPS's potential role in airway epithelial cells that actively participate in lung homeostasis. Here, we report a previously unappreciated function of LysoPS in production of a mucin component, MUC5AC, in the airway epithelial cells. LysoPS stimulated lung epithelial cells to produce MUC5AC via signaling pathways involving TACE, EGFR, and ERK. Specifically, LysoPS- dependent biphasic activation of ERK resulted in TGF-alpha secretion and strong EGFR phosphorylation leading to MUC5AC production. Collectively, LysoPS induces the expression of MUC5AC via a feedback loop composed of proligand synthesis and its proteolysis by TACE and following autocrine EGFR activation. To our surprise, we were not able to find a role of GPCRs and TLR2, known LysoPS receptors in LysoPS-induced MUC5AC production in airway epithelial cells, suggesting a potential receptor-independent action of LysoPS during inflammation. This study provides new insight into the potential function and mechanism of LysoPS as an emerging lipid mediator in airway inflammation.

키워드

airway epithelial cellsEGFRMUC5ACLysoPSTACETGF-alphaTLR2ALPHA-CONVERTING ENZYMEGROWTH-FACTOR RECEPTORMUCUS HYPERSECRETIONSIGNALING PATHWAYSMUCIN EXPRESSIONKINASEPROLIFERATIONCASCADERELEASEROLES
제목
Lysophosphatidylserine Induces MUC5AC Production via the Feedforward Regulation of the TACE-EGFR-ERK Pathway in Airway Epithelial Cells in a Receptor-Independent Manner
저자
Sim, Myeong SeongKim, Hye JeongJo, Sang HeeKim, ChunChung, Il Yup
DOI
10.3390/ijms23073866
발행일
2022-04
유형
Article
저널명
International Journal of Molecular Sciences
23
7
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1 ~ 17

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