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Published on: February 20, 2019
Post‑translational modifications in atherosclerosis: Roles, mechanisms and therapeutic potential (Review)
Xiaoxiang Xu1, Fei Ma1, Wei Yu1
1College of Life Sciences and Medicine, Zhejiang Sci‑Tech University, Hangzhou, Zhejiang 310018, P.R. China.
Insights
Protein post-translational modifications (PTMs) regulate atherosclerosis (AS) development. This review integrates PTMs into AS networks, highlighting lysine lactylation and PTM crosstalk for therapeutic targeting.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Biochemistry
Background:
- Atherosclerosis (AS) is a major cardiovascular disease driven by endothelial dysfunction, lipid accumulation, inflammation, and plaque instability.
- Protein post-translational modifications (PTMs) act as a crucial regulatory layer, translating cellular cues into functional protein changes.
Purpose of the Study:
- To review the roles of major PTMs in AS pathogenesis.
- To emphasize the integration of PTMs into disease-related regulatory networks.
- To evaluate the therapeutic potential of targeting PTMs in AS.
Main Methods:
- Comprehensive literature review of PTMs in atherosclerosis.
- Analysis of PTM integration into disease networks, including lysine lactylation and PTM crosstalk.
- Evaluation of therapeutic strategies targeting PTM-related enzymes and pathways.
Main Results:
- Major PTMs (lysine, cysteine modifications, phosphorylation, glycosylation, nitration, ADP-ribosylation) play significant roles in AS.
- Lysine lactylation links lactate metabolism to endothelial dysfunction and vascular cell changes.
- PTM crosstalk, such as SUMOylation-ubiquitination, coordinates key pathological processes like inflammasome activation.
Conclusions:
- PTMs are integral to AS pathogenesis, offering potential therapeutic targets.
- Targeting PTMs, including lysine lactylation and crosstalk, presents a promising avenue for AS treatment.
- Challenges remain in validating PTM effects, especially in human plaques, and bridging the translational gap.
Abstract:
Atherosclerosis (AS) is the principal pathological basis of cardiovascular disease and develops through the coordinated progression of endothelial dysfunction, lipid accumulation, macrophage foam‑cell formation, vascular smooth muscle cell remodeling, chronic inflammation and plaque destabilization. Protein post‑translational modifications (PTMs) provide a reversible regulatory layer through which metabolic, oxidative, inflammatory and mechanical cues are translated into changes in protein activity, stability, localization and molecular interactions. In this review, the roles of major PTMs in AS were summarized, including lysine modifications, cysteine modifications, phosphorylation, glycosylation, nitration and ADP‑ribosylation. Rather than treating these modifications as isolated events, their integration into disease‑related regulatory networks is emphasized. In particular, lysine lactylation is discussed as a metabolic‑epigenetic mechanism linking lactate accumulation to endothelial dysfunction, macrophage polarization, vascular smooth muscle cell senescence and vascular calcification. PTM crosstalk is also highlighted, including SUMOylation‑ubiquitination and ubiquitination‑phosphorylation interactions, as a mechanism that coordinates inflammasome activation, oxidative stress and vascular cell phenotypic switching. Finally, the therapeutic potential of targeting PTM‑related enzymes and pathways, such as histone deacetylases, poly(ADP‑ribose) polymerases, kinases and palmitoylation regulators was evaluated, while addressing key challenges including context‑dependent PTM effects, limited site‑specific validation, insufficient human plaque evidence and the translational gap between experimental findings and clinical application. This review provides an integrated framework for understanding PTM‑mediated regulation in AS and for developing more precise PTM‑based therapeutic strategies.
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