Cananga odorata (Ylang-Ylang) modulate pathways involved in cancer: Gene set enrichment and network pharmacology approach

IF 0.1 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Sathgowda A Patil, Vishal S. Patil, A. P. Malgi, V. B. Hupparage, Shamanand P. Mallapur, Reenal R Naik
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引用次数: 0

Abstract

Traditionally, Cananga odorata Hook. F. & Thomson (Ylang-Ylang) is commonly used to treat various diseases and has been assessed for anti-cancer potency in experimental animal models. However, the affinity of its phytocompounds with multiple proteins involved in the pathogenesis of cancer has not been illuminated yet. The present study was framed to elucidate the molecular mechanisms of Cananga odorata for its anticancer activity via compound-gene set pathway enrichment analysis, network pharmacology, and docking studies. Initially, phytocompounds were retrieved from herbs databases and literature. Structural information of each compound was obtained from the PubChem database. Druggable characteristics and side effects were predicted using MolSoft and ADVERpred. ADMET profile was predicted using PreADMET online server. Possible target proteins of each compound were predicted by BindingDB (p≥0.7). Compounds modulating the target proteins associated with the cancer were separated based on the successful and approved targets available in the Therapeutic Target Database. STRING and KEGG pathway database was used to analyze the molecular pathways modulated by the protein targets. The interaction between compounds, proteins, and pathways was constructed by Cytoscape 3.6.1, and docking of compounds with protein target was performed using AutoDock 4.2. Among 26 compounds, 12 phytocompounds were identified to modulate 34 pathways associated with cancer. 4-hydroxy-5,6,7-trimethoxyflavanone and Reticuline showed the maximum interactions with proteins involved in cancer. All 12 compounds obeyed the rule of five and p-methoxybenzaldehyde scored the highest drug-likeness score. Micheline A and Anonaine showed the highest binding affinity with Ubiquitin-protein ligase E3 (MDM2). The current study provides the molecular documentation of phytocompounds from Cananga odorata in the regulation of multi-proteins and pathways associated with progression of cancer (mainly Gastric, Melanoma, Prostate, and Breast cancer), which can be further investigated via wet-lab protocols.
香兰(Ylang-Ylang)调节癌症相关通路:基因集富集和网络药理学方法
传统上,Cananga odorata钩子。F. & Thomson(依兰-依兰)通常用于治疗各种疾病,并已在实验动物模型中评估其抗癌效力。然而,其植物化合物与多种参与癌症发病机制的蛋白质的亲和力尚未被阐明。本研究旨在通过化合物-基因集途径富集分析、网络药理学和对接研究等手段,阐明加南加抗癌作用的分子机制。最初,从草药数据库和文献中检索植物化合物。每个化合物的结构信息从PubChem数据库中获得。用MolSoft和ADVERpred预测药物特性和副作用。使用PreADMET在线服务器预测ADMET配置文件。BindingDB预测各化合物可能的靶蛋白(p≥0.7)。根据治疗靶标数据库中成功和批准的靶标,分离出调节与癌症相关的靶蛋白的化合物。利用STRING和KEGG通路数据库分析蛋白靶点调控的分子通路。利用Cytoscape 3.6.1构建化合物、蛋白和通路之间的相互作用,利用AutoDock 4.2完成化合物与蛋白靶点的对接。在26种化合物中,鉴定出12种植物化合物可调节34种与癌症相关的途径。4-羟基-5,6,7-三甲氧基黄酮和Reticuline与癌症相关蛋白的相互作用最大。所有12个化合物都符合5的规则,对甲氧基苯甲醛的药物相似性得分最高。Micheline A和Anonaine与泛素蛋白连接酶E3 (MDM2)的结合亲和力最高。目前的研究提供了来自加南加的植物化合物在调节与癌症(主要是胃癌、黑色素瘤、前列腺癌和乳腺癌)进展相关的多种蛋白质和途径中的分子记录,这可以通过湿实验室协议进一步研究。
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来源期刊
International Journal of Ayurvedic Medicine
International Journal of Ayurvedic Medicine MEDICINE, RESEARCH & EXPERIMENTAL-
自引率
50.00%
发文量
87
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