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Urological cancer: molecular docking of the active compound Scurrula atropurpurea against nuclear factor erythroid2- related factor2 (Nrf2)

机译:泌尿外癌:活性化合物胰腺炎ATROPURPUREA对核因子红细胞2-相关因子2的分子对接(NRF2)

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The nuclear factor erythroid2-related factor2 (Nrf2) is a transcription factor for redox homeostasis involved in antioxidant genes and detoxification enzymes. This transcription factor provides protection against organs and is involved in urological cancer progression. This study aims to investigate the interaction between the active compounds of Scurrula atropurpurea against the Nrf2 signal. This study was an in silico study. The research protocol consisted of searching for amino acids making up the Nrf2-Keap1 system, searching for the structure of the active component of Scurrula atropurpurea, modeling 3D protein structures, docking and visualization between protein-ligand, and analyzing bond interactions between proteins and ligands. The active compounds of Scurrula atropurpurea which are molecularly docking include aviculin, caffeine, catechin, epicatechin, kaempferol, quercetin, quercitrin, rutin, and theobromine. For interactions with Nrf2, rutin was easier to interact compared to other compounds. Energy interactions between caffeine, catechin, kaempferol, quercetin, quercitrin, and rutin were lower than the energy of interaction between Nrf2 and Keap-1. It was concluded that some of the active compounds of Scurrula atropurpurea can modulate the Nrf2 signal. Thus, there is an active compound from Scurrula atropurpurea which can be an anticancer urological candidate via an Nrf2 signal.
机译:核因子红外2相关因子2(NRF2)是参与抗氧化基因和排毒酶的氧化还原稳态的转录因子。这种转录因子提供对器官的保护,并且参与泌尿外癌进展。本研究旨在探讨苏格拉特阿托尔粥的活性化合物与NRF2信号之间的相互作用。这项研究是硅研究。该研究方案包括寻找构成NRF2-Keap1系统的氨基酸,搜索胰腺Atopurpurea的活性成分,建模3D蛋白质结构,对接和蛋白质 - 配体之间的可视化的结构,并分析蛋白质和配体之间的粘合相互作用。分子对接的苏格拉特阿妥粥的活性化合物包括青霉素,咖啡因,儿茶素,表人苷,川庚醇,槲皮素,槲皮素,芦丁和制碱。对于与NRF2的相互作用,与其他化合物相比,Rutin更容易与其他化合物相互作用。咖啡因,儿茶素,Kaempferol,槲皮素,槲皮素和芦丁之间的能量相互作用低于NRF2和Keap-1之间的相互作用能量。得出结论,一些刺毛ATROPURPUREA的一些活性化合物可以调节NRF2信号。因此,来自Scurrula Atropurpurea的活性化合物,可以通过NRF2信号是抗癌泌尿病患者。

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