Pan Zhixi, Liu Jiahui, Lin Shubin, Li Zhennan, Qin Shumin, Wu Haomeng, Li Feng, Wu Baojian, Wang Shuai
State Key Laboratory of Traditional Chinese Medicine Syndrome, Institute of Molecular Rhythm and Metabolism, Guangzhou University of Chinese Medicine, Guangzhou, PR China.
The Second Affiliated Hospital of Guangzhou University of Chinese Medicine, State Key Laboratory of Traditional Chinese Medicine Syndrome, State Key Laboratory of Dampness Syndrome of Chinese Medicine, Guangdong Provincial Key Laboratory of Clinical Research on Traditional Chinese Medicine Syndrome, Guangdong Provincial Hospital of Chinese Medicine, Guangzhou, PR China.
Phytomedicine. 2025 Jul;142:156759. doi: 10.1016/j.phymed.2025.156759. Epub 2025 Apr 11.
Ji-Ming-San (JMS), a traditional Chinese medicine, exhibits time-dependent pharmacological effects, suggesting its potential as a circadian clock modulator. However, the precise mechanisms by which JMS regulates circadian rhythms remain unclear.
This study aims to elucidate how JMS influences the local circadian clock machinery, and move beyond association to mechanistic discovery.
A jet lag model of circadian disruption was used to assess the regulatory effects of JMS on circadian behavior and clock gene expression. The impact of JMS on clock genes was examined in colon epithelial cells. Non-targeted metabolomics was utilized to identify key components and potential pathways. Network pharmacology, molecular docking, Gal4 co-transfection assays, and RNA sequencing were conducted to explore potential JMS targets. Chromatin immunoprecipitation assays were performed to investigate the transcriptional regulation mechanisms.
JMS restored circadian rhythms in locomotor activity and intestinal clock gene expression in jet-lagged mice. Under colitis conditions, JMS reduced pathological severity and inflammation in mice with circadian disruption by upregulating BMAL1 and PER2. In mice with normal circadian rhythms, the protective effect of JMS was observed during the remission phase of colitis. At the cellular level, JMS activated RORα and enhanced the transcription and expression of BMAL1 and PER2 in colonic epithelial cells. Metabolomics and RNA sequencing revealed that JMS inhibited NF-κB signaling, contributing to its anti-inflammatory action. Mechanistically, JMS enhanced RORα/HDAC3 binding to NF-κB target genes in epithelial cells, leading to reduced H3K9Ac levels and repression of Il-1β and Tnf-α, while epithelial RORα knockdown abolished the anti-inflammatory effects.
This study demonstrates that JMS activates epithelial RORα to restore circadian rhythm in the colon and suppresses NF-κB signaling, ultimately promoting colitis recovery These findings underscore the role of JMS in regulating intestinal circadian rhythm and highlight its potential as a chronotherapeutic strategy for colitis.
鸡鸣散(JMS)是一种中药,具有时间依赖性药理作用,提示其作为昼夜节律调节剂的潜力。然而,JMS调节昼夜节律的具体机制尚不清楚。
本研究旨在阐明JMS如何影响局部昼夜节律机制,并从关联研究深入到机制发现。
采用昼夜节律紊乱的时差模型评估JMS对昼夜行为和时钟基因表达的调节作用。在结肠上皮细胞中检测JMS对时钟基因的影响。利用非靶向代谢组学鉴定关键成分和潜在途径。进行网络药理学、分子对接、Gal4共转染实验和RNA测序以探索JMS的潜在靶点。进行染色质免疫沉淀实验以研究转录调控机制。
JMS恢复了时差反应小鼠的运动活动昼夜节律和肠道时钟基因表达。在结肠炎条件下,JMS通过上调BMAL1和PER2减轻了昼夜节律紊乱小鼠的病理严重程度和炎症。在昼夜节律正常的小鼠中,在结肠炎缓解期观察到JMS的保护作用。在细胞水平上,JMS激活RORα并增强结肠上皮细胞中BMAL1和PER2的转录和表达。代谢组学和RNA测序显示JMS抑制NF-κB信号通路,这有助于其抗炎作用。机制上,JMS增强了上皮细胞中RORα/HDAC3与NF-κB靶基因的结合,导致H3K9Ac水平降低以及Il-1β和Tnf-α的表达受抑制,而上皮细胞RORα敲低则消除了抗炎作用。
本研究表明,JMS激活上皮细胞RORα以恢复结肠昼夜节律并抑制NF-κB信号通路,最终促进结肠炎恢复。这些发现强调了JMS在调节肠道昼夜节律中的作用,并突出了其作为结肠炎时间治疗策略的潜力。