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Screening of Indonesian Phytochemicals as Adenylate Kinase 2 Inhibitor for Cancer Therapy.

机译:印度尼西亚植物化学物质作为腺苷酸激酶2抑制剂的癌症治疗筛选。

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Adenylate Kinase-2 (AK2) activity increases in cancer cells which results in high demand of energy supply through anaerobic metabolism. Bis(adenosine)-5'- pentaphosphate (Ap5a) is a synthetic compound that is able to inhibit AK family in cancer cells but it is still under development. There are 9,600 Indonesian phytochemicals which are predicted to have pharmacological activities and have been recorded in a database. Therefore this study aimed to identify Indonesian phytochemicals that can inhibit AK2 activity for cancer therapy. This was a bioinformatics study which used a molecular docking method. Because 3D structure of AK2 has not been established yet, MODELLER 9.19 program was used to create the AK2 model using AK1 template (PDB code: 1Z83). Ap5a, the standard compound, was obtained from zinc database (access code 96006032). Indonesian herbal plants which were registered in HerbalDB, had 3D structure in the PubChem database and met Lipinski's criteria becameresearch samples. The binding energy of Ap5a/phytochemicals with AK2 was determined using the AutoDock Vina 1.5.6 program and the visualization of docking results was doneusing PyMol 1.7.4 program. BR-Xanthone A, Thwaitesixanthone, Chitranone, Sojagol, Withanolide D, Dehydrodeguelin, MLS001143540, (-)-sesamin, and strigol had the lowest docking score but only BR-Xanthone A (-11,30) and Thwaitesixanthone (-11,00) had lower binding energy than Ap5a. All nine phytochemicals bond to the binding sites of AK2. Similar conformation to Ap5a was observed in seven phytochemicals (BR-Xanthone A, Thwaitesixanthone, Chitranone, Withanolide D, MLS001143540, (-)-sesamin, and strigol). In conclusion, BR-Xanthone A is the most potential candidate for AK2 inhibitor in silico. This study proposes that BR-Xanthone A can have its anticancer property, as globally known, by inhibitingAK2.
机译:腺癌细胞中的腺苷酸激酶2(AK2)活性增加,这导致通过厌氧代谢对能量供应的需求很高。双(腺苷)-5'-五磷酸酯(Ap5a)是一种合成化合物,能够抑制癌细胞中的AK家族,但仍处于开发阶段。预计有9,600种印度尼西亚植物化学药品具有药理活性,并已记录在数据库中。因此,本研究旨在确定可以抑制AK2活性的印度尼西亚植物化学物质,用于癌症治疗。这是一项使用分子对接方法的生物信息学研究。由于尚未建立AK2的3D结构,因此使用了MODELLER 9.19程序来使用AK1模板(PDB代码:1Z83)创建AK2模型。标准化合物Ap5a从锌数据库(访问代码96006032)获得。在HerbalDB中注册的印尼草药植物在PubChem数据库中具有3D结构,并且符合Lipinski的标准成为研究样品。使用AutoDock Vina 1.5.6程序确定Ap5a /植物化学物质与AK2的结合能,并使用PyMol 1.7.4程序完成对接结果的可视化。 BR-蒽酮A,Thwaitesixanthone,Chitranone,Sajagol,Withanolide D,Dehydrodeguelin,MLS001143540,(-)-芝麻素和strigol的对接分数最低,但只有BR-Xanthone A(-11,30)和Thwaitesixanthone(-11,00) )具有比Ap5a更低的结合能。所有九种植物化学物质均与AK2的结合位点结合。在七个植物化学物质(BR--吨酮A,Thwaitesixanthone,Chitranone,Withanolide D,MLS001143540,(-)-芝麻素和strigol)中观察到与Ap5a相似的构象。总之,BR-蒽酮A是AK2抑制剂在计算机领域中最有潜力的候选者。这项研究表明,BR-蒽酮A可以通过抑制AK2而具有其抗癌特性,这一点已广为人知。

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