生物
胞苷
下调和上调
病毒复制
细胞生物学
先天免疫系统
尿苷
信号转导
干扰素
TLR3型
转录组
促炎细胞因子
嘌呤代谢
核苷酸
调节器
细胞内
化学
抄写(语言学)
免疫系统
姜黄素
免疫
抗病毒蛋白
病毒学
谷氨酰胺分解
肠道病毒71
生物化学
新陈代谢
RNA剪接
嘧啶代谢
代谢途径
Ⅰ型干扰素
RNA干扰
核糖核酸
分子生物学
α-干扰素
HEK 293细胞
基因敲除
小干扰RNA
作者
Tingting Chen,Xiang Wang,Guangyuan Zhang,Lu Wang,Junhao Wan,Lirong Tan,Xinyue Fan,Siqin Meng,Zhixing Jin,Yuzhang Liang,Hongxia Li,Ziyuan Wan,Xiaotong Xu,Yan Zhang,Li Qin,Anna Malashicheva,Yu Du,Guangchao Zang,G. Y. Wang
出处
期刊:iMeta
[Wiley]
日期:2026-02-01
卷期号:5 (1)
摘要
Abstract Curcuminoids, including curcumin (CUR) and demethoxycurcumin (DMC), are known for their antiviral properties, but their underlying antiviral targets remain unclear, and the relationship between curcuminoids and the type I interferon (IFN‐I) signaling pathway has not been fully elucidated. Here, we explored the regulatory effects of DMC and CUR on the IFN‐I pathway in an EV‐D68‐infected murine model and employed multiomics analysis to identify key drug targets and their interaction networks. FTIR analysis indicated that DMC has better physicochemical stability than CUR, exhibiting greater stability under changes in light, temperature, and pH. In both in vitro and neonatal mouse models, DMC and CUR effectively inhibited EV‐D68 replication by suppressing viral 2A gene expression and the release of proinflammatory cytokines. Both compounds upregulated the molecular chaperone CRYAB (αB‐crystallin), which translocates to the nucleus and acts as a central regulator of host metabolism and antiviral immunity during EV‐D68 infection. Further multiomics analyses revealed that CRYAB overexpression inhibited purine metabolism and upregulated interferon‐stimulated genes. Proteomic profiling identified RBM26 as a key CRYAB‐interacting target. CRYAB stabilizes RBM26 by inhibiting virus‐induced ubiquitination, which leads to enhanced IFN‐I responses. DMC and CUR activated the mtDNA‐cGAS‐STING pathway via RBM26, stimulating downstream signaling and antiviral effects. RBM26 reconstitution altered the splicing of cytidine/uridine monophosphate kinase 2 ( CMPK2 ), resulting in increased nucleotide turnover and reduced cytidine levels, impairing viral replication. DMC/CUR treatment or CRYAB overexpression similarly reduced intracellular cytidine and uridine levels, increasing antiviral activity. Additionally, DMC/CUR restored mtDNA levels suppressed by EV‐D68 infection in an RBM26‐dependent manner, stimulating cGAS‐mediated cGAMP production and activating the STING‐TBK1‐IRF3 axis. These findings not only clarify the molecular mechanisms underlying the antiviral effects of curcuminoids but also highlight their therapeutic potential as host‐directed antiviral agents.
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