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Proteomic Profiling of Endothelial Cells Exposed to Mitomycin C: Key Proteins and Pathways Underlying Genotoxic
Maxim Sinitsky1, Egor Repkin2, Anna Sinitskaya1
1Laboratory of Genome Medicine, Research Institute for Complex Issues of Cardiovascular Diseases, 6 Academician Barbarash Boulevard, 650002 Kemerovo, Russia.
Abstract:
Mitomycin C (MMC)-induced genotoxic stress can be considered to be a novel trigger of endothelial dysfunction and atherosclerosis-a leading cause of cardiovascular morbidity and mortality worldwide. Given the increasing genotoxic load on the human organism, the decryption of the molecular pathways underlying genotoxic stress-induced endothelial dysfunction could improve our understanding of the role of genotoxic stress in atherogenesis. Here, we performed a proteomic profiling of human coronary artery endothelial cells (HCAECs) and human internal thoracic endothelial cells (HITAECs) in vitro that were exposed to MMC to identify the biochemical pathways and proteins underlying genotoxic stress-induced endothelial dysfunction. We denoted 198 and 71 unique, differentially expressed proteins (DEPs) in the MMC-treated HCAECs and HITAECs, respectively; only 4 DEPs were identified in both the HCAECs and HITAECs. In the MMC-treated HCAECs, 44.5% of the DEPs were upregulated and 55.5% of the DEPs were downregulated, while in HITAECs, these percentages were 72% and 28%, respectively. The denoted DEPs are involved in the processes of nucleotides and RNA metabolism, vesicle-mediated transport, post-translation protein modification, cell cycle control, the transport of small molecules, transcription and signal transduction. The obtained results could improve our understanding of the fundamental basis of atherogenesis and help in the justification of genotoxic stress as a risk factor for atherosclerosis.
Insights
Mitomycin C (MMC) genotoxic stress triggers endothelial dysfunction and atherosclerosis. Proteomic profiling identified key proteins involved in pathways like RNA metabolism and cell cycle control, offering insights into atherogenesis.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genotoxicology
Background:
- Endothelial dysfunction and atherosclerosis are major causes of cardiovascular disease.
- Genotoxic stress is an increasing concern with potential links to atherogenesis.
- Understanding molecular pathways of genotoxic stress-induced endothelial dysfunction is crucial.
Purpose of the Study:
- To identify proteins and biochemical pathways involved in Mitomycin C (MMC)-induced endothelial dysfunction.
- To compare proteomic changes in human coronary artery endothelial cells (HCAECs) and human internal thoracic endothelial cells (HITAECs) exposed to MMC.
- To elucidate the role of genotoxic stress in the development of atherosclerosis.
Main Methods:
- Proteomic profiling of HCAECs and HITAECs exposed to MMC in vitro.
- Identification and quantification of differentially expressed proteins (DEPs).
- Analysis of biological pathways associated with identified DEPs.
Main Results:
- 198 unique DEPs in MMC-treated HCAECs and 71 in HITAECs were identified.
- Only 4 DEPs were common to both cell types.
- DEPs were involved in nucleotide/RNA metabolism, vesicle transport, protein modification, cell cycle control, and signal transduction.
Conclusions:
- Genotoxic stress, induced by MMC, significantly alters endothelial cell proteomes.
- Specific protein expression changes in endothelial cells provide molecular insights into atherogenesis.
- Genotoxic stress should be considered a significant risk factor for atherosclerosis.
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