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草药化合物与生物靶点的相互作用:以黄连素为例的案例研究。

Interaction of herbal compounds with biological targets: a case study with berberine.

作者信息

Chen Xiao-Wu, Di Yuan Ming, Zhang Jian, Zhou Zhi-Wei, Li Chun Guang, Zhou Shu-Feng

机构信息

Department of General Surgery, The First People's Hospital of Shunde, Southern Medical University, Shunde, Guangdong 528300, China.

出版信息

ScientificWorldJournal. 2012;2012:708292. doi: 10.1100/2012/708292. Epub 2012 Nov 13.

Abstract

Berberine is one of the main alkaloids found in the Chinese herb Huang lian (Rhizoma Coptidis), which has been reported to have multiple pharmacological activities. This study aimed to analyze the molecular targets of berberine based on literature data followed by a pathway analysis using the PANTHER program. PANTHER analysis of berberine targets showed that the most classes of molecular functions include receptor binding, kinase activity, protein binding, transcription activity, DNA binding, and kinase regulator activity. Based on the biological process classification of in vitro berberine targets, those targets related to signal transduction, intracellular signalling cascade, cell surface receptor-linked signal transduction, cell motion, cell cycle control, immunity system process, and protein metabolic process are most frequently involved. In addition, berberine was found to interact with a mixture of biological pathways, such as Alzheimer's disease-presenilin and -secretase pathways, angiogenesis, apoptosis signalling pathway, FAS signalling pathway, Hungtington disease, inflammation mediated by chemokine and cytokine signalling pathways, interleukin signalling pathway, and p53 pathways. We also explored the possible mechanism of action for the anti-diabetic effect of berberine. Further studies are warranted to elucidate the mechanisms of action of berberine using systems biology approach.

摘要

黄连素是中药黄连(黄连根茎)中发现的主要生物碱之一,据报道具有多种药理活性。本研究旨在基于文献数据分析黄连素的分子靶点,随后使用PANTHER程序进行通路分析。对黄连素靶点的PANTHER分析表明,分子功能的最主要类别包括受体结合、激酶活性、蛋白质结合、转录活性、DNA结合和激酶调节活性。根据体外黄连素靶点的生物学过程分类,与信号转导、细胞内信号级联、细胞表面受体连接的信号转导、细胞运动、细胞周期控制、免疫系统过程和蛋白质代谢过程相关的靶点最为常见。此外,发现黄连素与多种生物通路相互作用,如阿尔茨海默病 - 早老素和 - 分泌酶通路、血管生成、凋亡信号通路、FAS信号通路、亨廷顿病、趋化因子和细胞因子信号通路介导的炎症、白细胞介素信号通路和p53通路。我们还探讨了黄连素抗糖尿病作用的可能作用机制。有必要进一步开展研究,以系统生物学方法阐明黄连素的作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7518/3504405/de384b9eff4d/TSWJ2012-708292.001.jpg

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