A+T rich interaction domain protein 3a (Arid3a) impairs Mertk-mediated efferocytosis in cholestasis

Ruiling Chen1, Bingyuan Huang1, Min Lian1

  • 1Division of Gastroenterology and Hepatology, Key Laboratory of Gastroenterology and Hepatology, Ministry of Health, State Key Laboratory for Oncogenes and Related Genes, Renji Hospital, School of Medicine, Shanghai Jiao Tong University; Shanghai Institute of Digestive Disease; 145 Middle Shandong Road, Shanghai 200001, China.

Journal of Hepatology
|September 2, 2023
PubMed
Abstract

Insights

Arid3a promotes cholestatic liver injury by hindering Mertk-mediated efferocytosis of apoptotic cholangiocytes by macrophages. Targeting the Arid3a-Mertk pathway offers a potential therapeutic strategy for cholestatic liver diseases.

Area of Science:

  • Hepatology
  • Immunology
  • Molecular Biology

Background:

  • Macrophages are crucial in cholestatic liver disease pathogenesis.
  • The role of Arid3a in macrophage function during cholestasis was previously unknown.

Purpose of the Study:

  • To investigate the role of Arid3a in macrophage function and cholestatic liver injury.
  • To elucidate the molecular mechanisms by which Arid3a influences cholestasis.

Main Methods:

  • Generated myeloid-specific Arid3a knockout mice and cholestatic models.
  • Assessed gene/protein expression, cellular localization, and transcriptome via qPCR, IHC, IF, flow cytometry, and RNA-seq.
  • Utilized Mertk inhibitors and promoter activity assays (ChIP-seq, luciferase).

Main Results:

  • Arid3a deletion alleviated liver injury and reduced macrophage accumulation.
  • Arid3a-deficient macrophages exhibited enhanced efferocytosis of apoptotic cholangiocytes via Mertk upregulation.
  • Arid3a directly suppressed Mertk transcription; targeting Mertk reversed protective effects.
  • Arid3a and Mertk levels were altered in human cholestatic liver diseases (PBC, PSC).

Conclusions:

  • Arid3a promotes cholestatic liver injury by impairing Mertk-mediated efferocytosis.
  • The Arid3a-Mertk axis represents a novel therapeutic target for cholestatic liver diseases.