首页> 外文期刊>Journal of Experimental Life Science >Virtual Prediction of The Effect Phenolic And Glucosinolate Compounds In Broccoli (Brassica Oleracea) On Anti-aging As Stimulant Nrf-2
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Virtual Prediction of The Effect Phenolic And Glucosinolate Compounds In Broccoli (Brassica Oleracea) On Anti-aging As Stimulant Nrf-2

机译:用刺激的NRF-2抗衰老抗衰老作用酚类和葡萄糖苷化合物的虚拟预测抗衰老NRF-2

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Aging is caused by an imbalance between antioxidants and ROS. Nuclear Factor Erythroid 2-related factor 2 (Nrf2) is a transcription factor that regulates antioxidant genes. Under normal conditions, Nrf2 will bind keap1 and cause degradation of Nrf2. Nrf2 activation can be stimulated by secondary metabolites, such as glucosinolate (glucoraphanin and sulforaphane) and phenolic (kaempferol and quercetin) groups found in broccoli ( Brassica oleracea ). The purposes of this study were to analyze the interaction of the four compounds with Keap1 through molecular docking, to identify interactions that inhibit Keap1, and also to know the bioactivity scores, drug-likeness, and bioactivity prediction of each compound. The Nrf2-Keap1 protein (ID: 2FLU) structure was retrieved from the protein database, whereas the quercetin (CID: 5280343); kaempferol (CID: 5280863), sulforaphane (CID: 5350), and glucoraphanin (CID: 656556) were obtained from the PubChem Database. Molecular docking was done with HEX 8.0. The docking results were visualized with Discovery Studio 2020. Drug-likeness and bioactivity scores of the compounds were identified using mollinspiration. Prediction of bioactivity was carried out with PASS Online. The results showed that the binding energy of quercetin with Keap1 was -268.72 kcal.mol~(-1), and glucoraphanin with Keap1 was -318.01 kcal.mol~(-1). We found that quercetin from the phenolic group and glucoraphanin from the glucosinolate group had a strong interaction with Keap1, indicated by the number of interactions occurred and the smaller energy needed. Hence both compounds could inhibit the interaction of Keap1-Nrf2. Consequently, Nrf2 could transcribe antioxidant genes. The interaction between Keap1 and quercetin may play a role related to ROS reduction activities, such as enhancing HMOXI expression. This study indicates that quercetin has more potential in drug development as peroxidase inhibitors.
机译:老化是由抗氧化剂和ROS之间的不平衡造成的。核因子红细胞2相关因子2(NRF2)是调节抗氧化基因的转录因子。在正常条件下,Nrf2的将结合的Nrf2的KEAP1和原因降解。 Nrf2的活化可以通过次级代谢产物,如芥子油苷(萝卜硫苷和萝卜硫素)和酚醛(山柰酚和槲皮素)基团来刺激在花椰菜(甘蓝)找到。本研究的目的是分析通过分子对接的四种化合物与Keap1的相互作用,以鉴定抑制Keap1的相互作用,并且还知道生物活性分数,类药性,和各化合物的生物活性的预测。所述Nrf2-Keap1的蛋白(ID:2FLU)结构从蛋白数据库中检索,而槲皮素(CID:5280343);山奈酚(CID:5280863),莱菔硫烷(CID:5350),和萝卜硫苷(CID:656556)获自PubChem数据库数据库获得。分子对接与HEX 8.0完成。对接结果与用mollinspiration鉴定的化合物的发现工作室2020类药性和生物活性分数可视化。生物活性的预测与PASS网上进行。结果表明,槲皮素与Keap1的结合能为-268.72 kcal.mol〜(-1),和萝卜硫苷与Keap1的是-318.01 kcal.mol〜(-1)。我们发现从芥子油苷组酚基和硫苷,槲皮素曾与Keap1的发生强烈的相互作用,通过互动的数字表示,需要更小的能量。因此这两种化合物能够抑制Keap1的-的Nrf2的相互作用。因此,Nrf2的转录能抗氧化基因。 Keap1的槲皮素之间的相互作用可以起到与ROS减少活动,如加强HMOXI表达的作用。这项研究表明,槲皮素在药物开发过氧化物酶抑制剂更有潜力。

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