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◆ Cell Reports2026-05-28· Vascular smooth muscle

ACSS2-mediated MYH9 crotonylation drives Zika virus-induced vascular smooth muscle cell phenotypic switching

Wen‐Cong Gao, Bin-Bao Wang, Renhua Yang, Liang Ma, Peng Wang, Xin Ma, Yang Tie-hua, Jia-xiang Tan, Guan-Rong Qiao, D. Zhang, YU He-min, JIANG Ying-Jie, Hongye Zhang, Yong-Tang Zheng, Peng Chen, Chang-Bo Zheng

原始摘要(英文原文)· Original abstract
Zika virus (ZIKV) infection represents an emerging cause of cardiovascular pathology, yet the molecular mechanisms driving virus-induced vascular injury remain incompletely defined. This investigation identifies a crotonylation pathway underlying ZIKV-induced vascular disease. We demonstrate that ZIKV infection upregulates the metabolic regulator ACSS2, consequently elevating intracellular crotonyl-CoA levels. This metabolic shift drives lysine crotonylation of the cytoskeletal protein MYH9 at the critical K82 residue, triggering a pathological transition of vascular smooth muscle cells from contractile to synthetic phenotypes. This cellular reprogramming promotes aortic injury across multiple animal models, including northern pig-tailed macaques and A129 mice. Genetic ablation of ACSS2 substantially attenuated both the phenotypic switching and disease progression. Furthermore, we developed a targeted therapeutic peptide that effectively inhibits MYH9-K82 crotonylation and mitigates pathological vascular remodeling. These findings not only elucidate ACSS2-mediated protein crotonylation as a fundamental mechanism in ZIKV-induced vasculopathy but also present a promising precision therapeutic strategy for treating virus-induced proliferative vascular diseases.
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ACSS2-mediated MYH9 crotonylation drives Zika virus-induced vascular smooth muscle cell phenotypic switching — 科研速览 Science Skim