4.7 Article

MiR-19a-3p Suppresses M1 Macrophage Polarization by Inhibiting STAT1/IRF1 Pathway

期刊

FRONTIERS IN PHARMACOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphar.2021.614044

关键词

M1 macrophage; macrophage polarization; miR-19a-3p; STAT1; post-transcriptional regulation

资金

  1. Natural Science Foundation of China [81873337, 81673981, 81704116]
  2. Primary Research and Development Plan of Shandong Province [2017GSF19118, 2017G006018, 2019GSF107036, 2019GSF108176]
  3. Project of Transformation in High-tech Achievements [2013ZHZX2A0405]
  4. Natural Science Foundation of Shandong Province [ZR2019MH039, ZR2018PH042]
  5. Science and Technology Development Grant of the State Administration of Traditional Chinese Medicine of Shandong Province [2017-174]
  6. Taishan Scholars [Tsqn 201812125]
  7. Innovation Project of Shandong Academy of Medical Sciences
  8. Academic Promotion Program of Shandong First Medical University [2019RC005]

向作者/读者索取更多资源

The study revealed that miR-19a-3p inhibits M1 macrophage polarization by targeting STAT1. This pathway can potentially be used for designing novel immunotherapy to modulate macrophage polarization and reduce inflammation.
Macrophages, an important type of immune cells, are generally polarized to classically activated macrophage (M1) or alternatively activated macrophage (M2) to respond to environmental stimuli. Signal transducer and activator of transcription 1 (STAT1), a very important transcription factor, can promote M1 macrophage polarization. However, the mechanisms of regulating STAT1 in macrophage polarization remain unclear. In the present study, STAT1 was markedly elevated, however, miR-19a-3p was down-regulated in interferon (IFN)-gamma and lipopolysaccharide (LPS) treated RAW264.7 cells, and dual-luciferase reporter assay identified that miR-19a-3p directly targeted STAT1 by binding to its 3 ' UTR. Up-regulated miR-19a-3p inhibited M1 polarization by targeting STAT1/interferon regulatory factor 1 (IRF1) and vice versa in vitro. Consistently, overexpression of miR-19a-3p in LPS treated mice by systemically administering agomiR-19a-3p effectively reduced the inflammation in mouse lung tissues, and inhibited M1 macrophage polarization via suppressing STAT1/IRF1 pathway. In summary, our study confirmed that miR-19a-3p, as a direct regulator of STAT1, inhibited M1 macrophages polarization. The miR-19a-3p/STAT1/IRF1 pathway can potentially be used to design novel immunotherapy for modulating macrophage polarization.

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