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Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.

Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.

期刊: Frontiers in immunology 日期: 2026-01-01 PMID: 42582908 DOI: 10.3389/fimmu.2026.1784874 浏览: 22
作者: Dong Z, Zhou Y, Gao Y, Guo R, He X, Deng Y, Chen Y, Zhu Q, Wei J, Guo Z
Z, D., Y, Z., Y, G., R, G., X, H., Y, D., Y, C., Q, Z., J, W., & Z, G. (2026). Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.. Frontiers in immunology. https://doi.org/10.3389/fimmu.2026.1784874
Z D, Y Z, Y G, R G, X H, Y D, et al. Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.. Frontiers in immunology. 2026; doi: 10.3389/fimmu.2026.1784874
Z D, Y Z, Y G, et al. Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.[J]. Frontiers in immunology. 2026. DOI: 10.3389/fimmu.2026.1784874.
@article{z2026,
  author = {Dong Z and Zhou Y and Gao Y and Guo R and He X and Deng Y and Chen Y and Zhu Q and Wei J and Guo Z},
  title = {Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.},
  journal = {Frontiers in immunology},
  year = {2026},
  doi = {10.3389/fimmu.2026.1784874},
  note = {PMID: 42582908},
}
TY  - JOUR
AU  - Dong Z
AU  - Zhou Y
AU  - Gao Y
AU  - Guo R
AU  - He X
AU  - Deng Y
AU  - Chen Y
AU  - Zhu Q
AU  - Wei J
AU  - Guo Z
TI  - Protein acetylation in atherosclerosis: beyond inflammation to core cellular processes and therapeutic potential.
T2  - Frontiers in immunology
PY  - 2026
DO  - 10.3389/fimmu.2026.1784874
AN  - PMID:42582908
ER  - 

摘要

Atherosclerosis (AS) is the leading cause of cardiovascular disease-related mortality worldwide and serves as the core pathological basis for cardiovascular events. Protein acetylation, a widespread and highly dynamic post-translational modification, has emerged as a critical link connecting epigenetic regulation, metabolic homeostasis, and inflammatory signaling, thereby playing an important role in both the initiation and progression of AS. This review systematically summarizes the major forms of protein acetylation, including N-terminal acetylation and lysine acetylation, as well as the key regulatory enzymes involved, such as acetyltransferases (e.g., HATs and NATs) and deacetylases (e.g., HDACs and sirtuins). Particular emphasis is placed on the cell type-specific regulatory roles of acetylation in macrophages, vascular endothelial cells, and vascular smooth muscle cells. Accumulating evidence indicates that protein acetylation modulates gene transcription and protein function through multiple mechanisms, thereby influencing a broad spectrum of AS-related processes, including inflammation, glycolipid metabolism, oxidative stress, energy metabolism, apoptosis, proliferation, and migration. Based on these mechanisms, therapeutic strategies targeting enzymes that regulate acetylation, particularly selective HDAC inhibitors and sirtuin activators, have emerged as promising approaches for the treatment of AS. By integrating recent advances in cellular heterogeneity, plaque stage-specific regulation, and human translational evidence, this review further discusses the therapeutic potential of targeting acetylation-regulating enzymes and critically evaluates the current limitations of this strategy, including contradictory findings, off-target effects, and barriers to clinical translation. Overall, protein acetylation represents a key regulatory hub linking epigenetics, metabolism, and inflammation. A deeper understanding of its regulatory network may provide new insights into the development of precision therapies for AS.

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