Identification of Key Genes and Pathways in Genotoxic Stress Induced Endothelial Dysfunction: Results of Whole Transcriptome Sequencing

被引:4
|
作者
Sinitsky, Maxim [1 ]
Sinitskaya, Anna [1 ]
Shishkova, Daria [2 ]
Tupikin, Alexey [3 ]
Asanov, Maxim [1 ]
Khutornaya, Maria [1 ]
Kabilov, Marsel [3 ]
Ponasenko, Anastasia [1 ]
机构
[1] Res Inst Complex Issues Cardiovasc Dis, Lab Genome Med, Kemerovo 650002, Russia
[2] Res Inst Complex Issues Cardiovasc Dis, Lab Mol Translat & Digital Med, Kemerovo 650002, Russia
[3] Russian Acad Sci, Siberian Branch, Inst Chem Biol & Fundamental Med, Novosibirsk 630090, Russia
基金
俄罗斯科学基金会;
关键词
mutagenesis; atherogenesis; endothelial disfunction; genotoxic stress; DNA damage; RNA-seq; transcriptomic signature; bioinformatic analysis; differentially expressed genes; gene ontology enrichment; FERREDOXIN REDUCTASE; VASCULAR ENDOTHELIUM; PROTEIN; P53; ATHEROSCLEROSIS; ACTIVATION; EXPRESSION; MIGRATION; CELLS; TETRAHYDROBIOPTERIN;
D O I
10.3390/biomedicines10092067
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Atherosclerosis is a leading cause of cardiovascular morbidity and mortality worldwide. Endothelial disfunction underlying the atherogenesis can be triggered by genotoxic stress in endothelial cells. In the presented research whole transcriptome sequencing (RNA-seq) of human coronary artery (HCAEC) and internal thoracic artery (HITAEC) endothelial cells in vitro exposed to 500 ng/mL mitomycin C (treatment group) or 0.9% NaCl (control group) was performed. Resulting to bioinformatic analysis, 56 upregulated differentially expressed genes (DEGs) and 6 downregulated DEGs with absolute fold change >= 2 and FDR p-value < 0.05 were selected in HCAEC exposed to mitomycin C compared to the control group; in HITAEC only one upregulated DEG was found. According to Gene Ontology enrichment analysis, DEGs in HCAEC were classified into 25 functional groups of biological processes, while in HITAEC we found no statistically significant (FDR p-value < 0.05) groups. The four largest groups containing more than 50% DEGs ("signal transduction", "response to stimulus", "biological regulation", and "regulation of biological process") were identified. Finally, candidate DEGs and pathways underlying the genotoxic stress induced endothelial disfunction have been discovered that could improve our understanding of fundamental basis of atherogenesis and help to justification of genotoxic stress as a novel risk factor for atherosclerosis.
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收藏
页数:15
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