Predicting the ferroptosis-associated gene targets in atherosclerosis by integrating GWAS and eQTL studies summary

Juan Li1,2, Jiao Nong1, Xiao Yan Huang2

  • 1Guangxi University of Chinese Medicine, Nanning, China.

Medicine
|June 17, 2025
PubMed

Insights

Researchers identified four key genes (ATG7, SREBF1, GLRX5, SRSF9) linked to ferroptosis in atherosclerosis, offering potential biomarkers for diagnosing and treating this cardiovascular disease.

Area of Science:

  • Genetics and Cardiovascular Research

Background:

  • Atherosclerosis (AS) is a leading cause of death, driven by chronic arterial inflammation, yet its precise pathological mechanisms remain unclear.
  • Current treatments like statins are insufficient for all patients, necessitating novel therapeutic targets and diagnostic tools.

Purpose of the Study:

  • To investigate the genetic links between ferroptosis and atherosclerosis using bioinformatics approaches.
  • To identify potential gene biomarkers for ferroptosis-related pathways in atherosclerosis.

Main Methods:

  • Integrated genome-wide association studies (GWAS) summary data for AS with expression quantitative trait locus (eQTL) data and ferroptosis-associated genes from the FerrDb database.
  • Employed summary-data-based Mendelian Randomization (SMR) and Bayesian co-localization analyses.
  • Utilized eQTL data from 31,684 individuals and GWAS data from FinnGen (51,589 AS cases, 343,079 controls).

Main Results:

  • Identified ATG7, SREBF1, GLRX5, and SRSF9 as genes associated with ferroptosis-related targets in AS.
  • SMR analysis revealed ATG7 and SREBF1 showed strong associations with ferroptosis-related gene targets in AS.
  • Co-localization analysis indicated shared causal variation between ATG7, SREBF1, and atherosclerosis.
  • Enrichment analysis suggested these genes are involved in autophagy and ferroptosis pathways.

Conclusions:

  • Four key genes (ATG7, SREBF1, GLRX5, SRSF9) associated with ferroptosis in atherosclerosis were identified.
  • These genes represent potential biomarkers for ferroptosis-associated pathways, aiding in disease diagnosis and therapy.
  • Further functional investigations are warranted to validate these findings.