Mawatari Kazuaki, Koike Nobuya, Nohara Kazunari, Wirianto Marvin, Uebanso Takashi, Shimohata Takaaki, Shikishima Yasuhiro, Miura Hiroyuki, Nii Yoshitaka, Burish Mark J, Yagita Kazuhiro, Takahashi Akira, Yoo Seung-Hee, Chen Zheng
Department of Biochemistry and Molecular Biology, The University of Texas Health Science Center at Houston, 6431 Fannin St., Houston, TX, 77030, USA.
Department of Preventive Environment and Nutrition, Institute of Biomedical Sciences, Tokushima University Graduate School, Kuramoto-cho 3-18-15, Tokushima, 770-8503, Japan.
Mol Nutr Food Res. 2023 May;67(9):e2200270. doi: 10.1002/mnfr.202200270. Epub 2023 Mar 17.
Polymethoxylated flavones (PMFs) are a group of natural compounds known to display a wide array of beneficial effects to promote physiological fitness. Recent studies reveal circadian clocks as an important cellular mechanism mediating preventive efficacy of the major PMF Nobiletin against metabolic disorders. Sudachitin is a PMF enriched in Citrus sudachi, and its functions and mechanism of action are poorly understood.
Using circadian reporter cells, it shows that Sudachitin modulates circadian amplitude and period of Bmal1 promoter-driven reporter rhythms, and real-time qPCR analysis shows that Sudachitin alters expression of core clock genes, notably Bmal1, at both transcript and protein levels. Mass-spec analysis reveals systemic exposure in vivo. In mice fed with high-fat diet with or without Sudachitin, it observes increased nighttime activity and daytime sleep, accompanied by significant metabolic improvements in a circadian time-dependent manner, including respiratory quotient, blood lipid and glucose profiles, and liver physiology. Focusing on liver, RNA-sequencing and metabolomic analyses reveal prevalent diurnal alteration in both gene expression and metabolite accumulation.
This study elucidates Sudachitin as a new clock-modulating PMF with beneficial effects to improve diurnal metabolic homeostasis and liver physiology, suggesting the circadian clock as a fundamental mechanism to safeguard physiological well-being.
多甲氧基黄酮(PMFs)是一类天然化合物,已知具有多种促进生理健康的有益作用。最近的研究表明,生物钟是介导主要PMF川陈皮素预防代谢紊乱功效的重要细胞机制。酸橘素是一种富含于酸橘中的PMF,其功能和作用机制尚不清楚。
使用生物钟报告细胞,结果显示酸橘素可调节Bmal1启动子驱动的报告节律的生物钟振幅和周期,实时定量PCR分析表明,酸橘素在转录和蛋白质水平上均改变了核心生物钟基因的表达,尤其是Bmal1。质谱分析揭示了其在体内的全身暴露情况。在喂食含或不含酸橘素的高脂饮食的小鼠中,观察到夜间活动增加和白天睡眠增多,同时在生物钟时间依赖性方式下代谢有显著改善,包括呼吸商、血脂和血糖水平以及肝脏生理功能。聚焦于肝脏,RNA测序和代谢组学分析揭示了基因表达和代谢物积累中普遍存在的昼夜变化。
本研究阐明酸橘素是一种新型的调节生物钟的PMF,具有改善昼夜代谢稳态和肝脏生理功能的有益作用,表明生物钟是维护生理健康的基本机制。