Circ-myh8/KAT7 Affects PANoptosis in Pulmonary Arterial Smooth Muscle Cells: Involvement of Super-Enhancers in FOSL2

Jingya Zhang1, Xinru Wang1, Xu Wang1

  • 1Department of Pharmacology Harbin Medical University-Daqing Daqing Heilongjiang People's Republic of China.

Abstract

Insights

Super-enhancers (SEs) regulate FOSL2 transcription, driving PANoptosis in pulmonary arterial smooth muscle cells (PASMCs). Targeting the circ-myh8/KAT7/SE/FOSL2 pathway offers potential new treatments for pulmonary hypertension.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Genetics

Background:

  • Pulmonary hypertension involves regulated cell death, including PANoptosis.
  • Super-enhancers (SEs) are implicated in pulmonary hypertension by regulating gene transcription.
  • The role of SEs in PANoptosis induction in pulmonary arterial smooth muscle cells (PASMCs) is not fully understood.

Purpose of the Study:

  • To investigate whether SEs influence PANoptosis in PASMCs.
  • To identify SE-regulated target genes involved in PANoptosis.
  • To elucidate the molecular mechanisms linking SEs to PANoptosis in PASMCs.

Main Methods:

  • Integrated ChIP-sequencing and RNA sequencing to identify SE-regulated genes in hypoxic PASMCs.
  • Bioinformatics analysis to predict transcription factor binding sites.
  • Coimmunoprecipitation, ChIP-PCR, and immunoblotting to validate epigenetic mechanisms and protein expression.
  • Fluorescence staining and immunofluorescence to assess PANoptosis.
  • CRISPR-Cas9-mediated knockdown of SE regions to evaluate functional impact.

Main Results:

  • FOSL2 was identified as an SE-regulated target gene.
  • MAZ was predicted as a transcription factor binding to FOSL2 SE and promoter regions.
  • circ-myh8 and KAT7 were shown to enhance H3K27ac enrichment in the FOSL2 SE region.
  • Knockdown of the FOSL2 SE reduced PANoptosis in PASMCs.
  • FOSL2 acts as a transcription factor for PANoptosis-related genes.

Conclusions:

  • The circ-myh8/KAT7/SE/FOSL2 axis promotes FOSL2 transcription and PANoptosis in PASMCs.
  • This pathway provides new insights into pulmonary hypertension pathophysiology.
  • The findings suggest potential novel therapeutic strategies for pulmonary hypertension.

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