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首页> 外文期刊>Asian Journal of Pharmaceutical and Clinical Research >VIRTUAL SCREENING OF INDONESIAN HERBAL DATABASE FOR DNA METHYLTRANSFERASE INHIBITORS
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VIRTUAL SCREENING OF INDONESIAN HERBAL DATABASE FOR DNA METHYLTRANSFERASE INHIBITORS

机译:印尼草药数据库对DNA甲基转移酶抑制剂的虚拟筛选

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Objective: DNA hypermethylation is an abnormal epigenetic process catalyzed by DNA methyltransferase 1 (DNMT1). It is also one of the factors that cause non-communicable diseases such as cancer, diabetes, and other metabolic diseases. DNA hypermethylation can be reversed by suppressing DNMT1 activity using a DNMT inhibitor. This study was conducted to seek out inhibitor candidates among natural products. Methods: The search for potential inhibitors was conducted through a virtual screening of the Indonesian Herbal Database using AutoDockVina as docking software. Twenty-five compounds known for their inhibitory activity against DNMT1 were used as actives and as a reference for generating decoys, which was done using the Directory of Useful Decoys, Enhanced. Results: The 12 compounds with binding energies below the cutoff value were cassiamin C (A1), procyanidin B2 (B2), ent-epicatechin- (4alpha->8)-ent-epicatechin (C3), epicatechin-(4beta->8)-epicatechin-3-O-gallate (D4), neorhusflavanone (E5), 3-O-galloylepicatechin- (4beta->6)-epicatechin-3-O-gallate (F6), withanolide (G7), 3-O-galloylepigallocatechin-(4beta->6)-epigallocatechin-3-O-gallate (H8), cyanidin 3-(6’’-caffeylsophoroside)-5-glucoside (I9), epifriedelanol (J10), gallocatechin-(4alpha->8)-epicatechin (K11), and scutellarein 7-glucosyl-(1->4)- rhamnoside (L12). A1 had the lowest binding energy of ?12.7 kcal/mol, whereas K11 had the highest of ?11.5 kcal/mol. Conclusions: The virtual screening yielded five potential DNMT1 inhibitors: Procyanidin B2, ent-epicatechin-(4alpha->8)-ent-epicatechin, epicatechin-(4beta->8)-epicatechin-3-O-gallate, neorhusflavanone, and cyanidin 3-(6’’-caffeylsophoroside)-5-glucoside.
机译:目的:DNA甲基化过高是DNA甲基转移酶1(DNMT1)催化的异常表观遗传过程。它也是引起非传染性疾病如癌症,糖尿病和其他代谢性疾病的因素之一。通过使用DNMT抑制剂抑制DNMT1活性,可以逆转DNA过度甲基化。进行该研究以在天然产物中寻找抑制剂候选物。方法:使用AutoDockVina作为对接软件,通过虚拟筛选印尼草药数据库进行潜在抑制剂的搜索。以对DNMT1的抑制活性而闻名的25种化合物用作活性物质,并用作生成诱饵的参考,这是使用《增强的有用诱饵目录》完成的。结果:结合能低于临界值的12种化合物为决明子C(A1),原花青素B2(B2),对-表儿茶素(4alpha-> ​​8)-对-表儿茶素(C3),表儿茶素-(4beta-> 8 )-表儿茶素-3-O-没食子酸酯(D4),新胡黄烷酮(E5),3-O-没食子儿茶素-(4β-> 6)-表儿茶素-3-O-没食子酸酯(F6),醇(G7),3-O -galloylepigallocatechin-(4beta-> 6)-epigallocatechin-3-O-gallate(H8),花青素3-(6''-Caffeylsophoroside)-5-葡萄糖苷(I9),表弗瑞德罗醇(J10),gallocatechin-(4alpha-> 8)-表儿茶素(K11)和黄cut素7-葡萄糖基-(1-> 4)-鼠李糖苷(L12)。 A1的最低结合能为〜12.7kcal / mol,而K11的最高结合能为〜11.5kcal / mol。结论:虚拟筛选产生了五种潜在的DNMT1抑制剂:原花青素B2,对-表儿茶素-(4α-> 8)-对-表儿茶素,表儿茶素-(4β-> 8)-表儿茶素-3-O-没食子酸酯,新胡皮黄酮和花青素3-(6''-咖啡酰基槐糖苷)-5-葡萄糖苷。

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