| First Author | Kim SY | Year | 2016 |
| Journal | Sci Rep | Volume | 6 |
| Pages | 29673 | PubMed ID | 27406916 |
| Mgi Jnum | J:338000 | Mgi Id | MGI:6225452 |
| Doi | 10.1038/srep29673 | Citation | Kim SY, et al. (2016) Liver X receptor and STAT1 cooperate downstream of Gas6/Mer to induce anti-inflammatory arginase 2 expression in macrophages. Sci Rep 6:29673 |
| abstractText | Mer signaling increases the transcriptional activity of liver X receptor (LXR) to promote the resolution of acute sterile inflammation. Here, we aimed to understand the pathway downstream of Mer signaling after growth arrest-specific protein 6 (Gas6) treatment that leads to LXR expression and transcriptional activity in mouse bone-marrow derived macrophages (BMDM). Gas6-induced increases in LXRalpha and LXRbeta and expression of their target genes were inhibited in BMDM from STAT1(-/-) mice or by the STAT1-specific inhibitor fludarabine. Gas6-induced STAT1 phosphorylation, LXR activation, and LXR target gene expression were inhibited in BMDM from Mer(-/-) mice or by inhibition of PI3K or Akt. Gas6-induced Akt phosphorylation was inhibited in BMDM from STAT1(-/-) mice or in the presence of fludarabine. Gas6-induced LXR activity was enhanced through an interaction between LXRalpha and STAT1 on the DNA promoter of Arg2. Additionally, we found that Gas6 inhibited lipopolysaccharide (LPS)-induced nitrite production in a STAT1 and LXR pathway-dependent manner in BMDM. Additionally, Mer-neutralizing antibody reduced LXR and Arg2 expression in lung tissue and enhanced NO production in bronchoalveolar lavage fluid in LPS-induced acute lung injury. Our data suggest the possibility that the Gas6-Mer-PI3K/Akt-STAT1-LXR-Arg2 pathway plays an essential role for resolving inflammatory response in acute lung injury. |