Aldose reductase deficiency inhibits LPS-induced M1 response in macrophages by activating autophagy

Peng Cheng1,2, Jianwei Xie3, Zhiyong Liu3

  • 1Department of Neurology, Second Naval Hospital of Southern Theater Command (425th Hospital of the People's Liberation Army), Sanya, 572000, China. chengpengfmmu@126.com.

Cell & Bioscience
|March 27, 2021
PubMed

Insights

Aldose reductase (AR) deficiency suppresses M1 macrophage polarization by activating autophagy, which degrades the NF-κB signaling complex. This reveals a novel mechanism regulating inflammatory responses.

Area of Science:

  • Immunology
  • Cell Biology

Background:

  • Macrophage M1 polarization drives inflammation and tissue damage.
  • Aldose reductase (AR) is implicated in M1 polarization, but mechanisms remain unclear.

Purpose of the Study:

  • To elucidate the role of aldose reductase (AR) in regulating M1 macrophage polarization.
  • To investigate the molecular mechanisms by which AR deficiency impacts inflammatory signaling.

Main Methods:

  • Utilized lipopolysaccharide (LPS)-stimulated macrophages from AR knockout (KO) mice.
  • Investigated the NF-κB pathway, autophagy markers (beclin1, p62), and protein degradation.
  • Employed autophagy inhibitors (3-methyladenine, ammonium chloride) to assess functional impact.

Main Results:

  • AR deficiency repressed inducible nitric oxide synthase (iNOS) induction in LPS-stimulated macrophages.
  • AR deficiency activated autophagy, leading to post-transcriptional downregulation of IKKβ and IKKγ via ubiquitination and autophagic degradation.
  • Blocking autophagy restored IKK protein levels and iNOS production in AR-deficient macrophages.

Conclusions:

  • AR deficiency regulates M1 macrophage polarization through autophagy-mediated degradation of NF-κB signaling components.
  • Selective autophagy plays a critical role in fine-tuning M1 macrophage polarization.
  • Findings highlight AR as a potential therapeutic target for inflammatory diseases.