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Updated: Oct 12, 2025

On-Chip Endothelial Inflammatory Phenotyping
Published on: July 21, 2012
Identification of Hub Genes Associated with Abnormal Endothelial Function in Early Coronary Atherosclerosis
Xue Qiu1, Jinyan Lin1, Yanbing Chen2
1Department of Cardiology, The First Affiliated Hospital of Guangxi Medical University, No. 6 Shuangyong Road, Nanning, 530021, Guangxi, People's Republic of China.
Insights
This study identified nine hub genes linked to abnormal coronary endothelial function, a key factor in early atherosclerosis development. These genes and associated pathways may drive disease progression.
Area of Science:
- Cardiovascular Biology
- Genomics
- Molecular Medicine
Background:
- Abnormal coronary endothelial function is a critical early event in atherosclerosis.
- Coronary atherosclerosis remains a leading global cause of mortality.
Purpose of the Study:
- To identify key genes (hub genes) associated with abnormal coronary endothelial function in early coronary atherosclerosis.
- To explore the molecular pathways involved in the development of this condition.
Main Methods:
- Weighted gene co-expression network analysis (WGCNA) on the GSE132651 dataset.
- Functional enrichment analysis and protein-protein interaction network construction.
- Gene Set Enrichment Analysis (GSEA) to identify associated biological processes.
Main Results:
- The 'midnightblue' module showed the strongest correlation with abnormal coronary endothelial function.
- Nine hub genes (e.g., HOXC5, PRND, PADI3) were identified with differential expression.
- GSEA linked hub gene expression to immune, coagulation, hypoxia, and angiogenesis pathways.
Conclusions:
- The identified hub genes and pathways are potentially involved in abnormal coronary endothelial function.
- These findings offer insights into the molecular mechanisms promoting early coronary atherosclerosis.
Abstract:
Abnormal coronary endothelial function is an important step in the development of atherosclerosis. Coronary atherosclerosis is one of the main causes of death worldwide. We constructed a co-expression network to identify hub genes associated with abnormal coronary endothelial function in early coronary atherosclerosis. In brief, we used the GSE132651 dataset from the gene expression omnibus database. The top 5000 genes with greatest variances were used for weighted gene co-expression network analysis, and the module most strongly correlated with abnormal coronary endothelial function was chosen as key module. Functional enrichment analysis was performed for genes in the key module, a protein-protein interaction network was constructed to find hub genes, and gene set enrichment analysis (GSEA) was also performed. Genes were classified into 7 modules, with the midnightblue module being the one that was most related to abnormal coronary endothelial function and containing genes enriched in DNA replication, cell cycle, nucleotide excision repair, and Human T-cell leukemia virus 1 infection. We identified nine hub genes (HOXC5, PRND, PADI3, RC3H1, DAPP1, SIT1, DRICH1, GPRIN2, and RHO), which differently expressed in abnormal and normal coronary endothelial function samples. GSEA suggested that samples associated with abnormal coronary endothelial function and highly expressed hub genes were linked with immune, coagulation, hypoxia, and angiogenesis processes. These hub genes, their expression pattern, and pathways may be involved in the development of abnormal coronary endothelial function and promotion of early coronary atherosclerosis.
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