木犀草素
转录因子
化学
脂质代谢
肥胖
能量稳态
生物
抄写(语言学)
新陈代谢
生物化学
药理学
表型
内分泌学
芹菜素
生物利用度
细胞生物学
内科学
甾醇调节元件结合蛋白
体内
平衡
减肥
受体
转录组
类黄酮
基因
作者
Fang Liu,Cao-an Hong,Shiqin Gong,Zhongyu Fan,Xin Xiao,Yi Xiao
标识
DOI:10.1021/acs.jafc.5c08997
摘要
Targeted regulation of lipid homeostasis through pharmacological interventions is good strategy to combat obesity and prolong lifespan across various organisms. Luteolin derived from edible plants exhibits widespread pharmacological activity. Here, we found that low-lipid phenotype induced by luteolin was transmitted to multigenerational progeny. Intriguingly, we found that DAF-16/FOXO and NHR-49/PPAR-α, along with β-oxidation genes and Δ9 desaturases, were essential for transgenerational fat regulation. Furthermore, H3K4me3 marks fat metabolism genes and enhances their transcription during multigenerational low-lipid inheritance. Importantly, we showed that luteolin activated the nuclear receptor NHR-49/PPAR-α in turn up-regulated transcription of the Δ9 desaturases, leading to increased MUFAs content, which was required for healthspan extension. Furthermore, by screening the classical pathways, we found that luteolin also promoted the healthspan via DAF-16. Our research has shown that luteolin reduces fat and extends lifespan through the same mechanism and luteolin is a potential molecule for weight loss and anti-aging.
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