Purine metabolic adaptation protects the endothelium from disturbed flow-induced DNA damage and atherosclerosis

成果类型:
Article
署名作者:
Ma, Qian; Cai, Yongfeng; Zhang, Zhidan; Zhao, Dingwei; Zhao, Yuan; Xu, Peishan; Lu, Tammy; Zhang, Wendy; Yang, Qiuhua; Zhou, Yaqi; Sudhahar, Varadarajan; Fukai, Tohru; Jo, Hanjoong; Xu, Yiming; Huo, Yuqing
署名单位:
Baylor College of Medicine; Anhui Medical University; Guangzhou Medical University; State University of New York (SUNY) System; Stony Brook University; Guangzhou University of Chinese Medicine; University System of Georgia; Augusta University; Emory University; University System of Georgia; Georgia Institute of Technology
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2526299123
发表日期:
2026-05-05
页码:
e2526299123
关键词:
ATIC de novo purine synthesis dna damage endothelial cells atherosclerosis NUCLEOTIDE-METABOLISM shear dysfunction activation
摘要:
Despite effective lipid-lowering therapies, atherosclerosis continues to be a leading cause of death, with considerable residual cardiovascular risk. Atherosclerotic lesions develop preferentially at arterial regions exposed to disturbed flow (d-flow), which induces genomic stress, endothelial injury, and barrier dysfunction. Hemodynamic forces are known to reprogram endothelial metabolism, but the role of de novo purine synthesis (DNPS), which supplies nucleotides for genome maintenance and whose terminal steps are catalyzed by the bifunctional enzyme ATIC, remains undefined in atherosclerosis. By integrating bulk and single-cell multiomics with in vitro flow systems and in vivo models, we show that d-flow upregulates DNPS and ATIC genes in vitro and in vivo, in concert with a DNA damage/repair state. Endothelial-specific Atic deletion exacerbates DNA damage, apoptosis, barrier dysfunction, and accelerates atherogenesis, while purine-base supplementation rescues repair defects. We further identify MYC as a mechanosensitive driver of ATIC induction. These findings establish a d-flow-MYC-ATIC-DNPS axis that sustains nucleotide sufficiency for DNA repair and maintains endothelial barrier integrity, suggesting potential endothelial-targeted therapeutic strategies for atherosclerosis.
来源URL: