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Topological and system-level protein interaction network (PIN) analyses to deduce molecular mechanism of curcumin

机译:拓扑和系统级蛋白质相互作用网络(PIN)分析以推导姜黄素的分子机制

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摘要

Curcumin is an important bioactive component of turmeric and also one of the important natural products, which has been investigated extensively. The precise mode of action of curcumin and its impact on system level protein networks are still not well studied. To identify the curcumin governed regulatory action on protein interaction network (PIN), an interectome was created based on 788 key proteins, extracted from PubMed literatures, and constructed by using STRING and Cytoscape programs. The PIN rewired by curcumin was a scale-free, extremely linked biological system. MCODE plug-in was used for sub-modulization analysis, wherein we identified 25 modules; ClueGo plug-in was used for the pathway’s enrichment analysis, wherein 37 enriched signalling pathways were obtained. Most of them were associated with human diseases groups, particularly carcinogenesis, inflammation, and infectious diseases. Finally, the analysis of topological characteristic like bottleneck, degree, GO term/pathways analysis, bio-kinetics simulation, molecular docking, and dynamics studies were performed for the selection of key regulatory proteins of curcumin-rewired PIN. The current findings deduce a precise molecular mechanism that curcumin might exert in the system. This comprehensive in-silico study will help to understand how curcumin induces its anti-cancerous, anti-inflammatory, and anti-microbial effects in the human body.
机译:姜黄素是姜黄的重要生物活性成分,也是一项重要的天然产品之一,它已经广泛研究。姜黄素的精确作用及其对系统水平蛋白质网络的影响仍然没有很好地研究。为了鉴定蛋白质相互作用网络(PIN)上的姜黄治理的调节作用,基于788个关键蛋白质创建卵巢,从PubMed文献中提取,并通过使用字符串和细胞展示来构造。用姜黄素重新加线的销是无垢,极其连接的生物系统。 MCODE插件用于子调制分析,其中我们确定了25个模块; Cluego插入用于途径的富集分析,其中获得了37个富集的信号通路。其中大多数与人类疾病群体,尤其是致癌,炎症和传染病有关。最后,对瓶颈,程度,去术语/途径分析,生物动力学模拟,分子对接和动力学研究的拓扑特性分析是针对姜黄素重新挤出销的关键调节蛋白进行的。目前的结果推导了一种精确的分子机制,姜黄素可能会在系统中发挥作用。这种综合的硅藻研究将有助于了解姜黄素如何在人体中诱导其抗癌,抗炎和抗微生物作用。

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