Allisin ve Diallil Disülfitin Moleküler Yerleştirme ve Reaktif Bölgelerinin Tanımlanması (Homo–Lumo, Mep): Potansiyel Antikanser İnhibitörü

Sevtap Çağlar Yavuz
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Abstract

Natural products have historically made a significant contribution to pharmacotherapy, especially for cancer diseases. Garlic contains a variety of bioactive molecules with anticancer effects, including allicin and diallyl disulfide. In this study, optimization computations were performed in the Gaussian 09 W utilizing the DFT with functional B3LYP method/6-31++G(d,p) basis set for allicin and diallyl disulfide. Drug-likeness and ADME-Tox properties were examined. Molecular docking was achieved to research the biological knowledge of allicin and diallyl disulfide. The protein preferred in these computations is the crystal structure of the 5XGN, EGFR mutants T790M/C797S complex. The binding energies for the allicin and diallyl disulfide molecules-EGFR mutants T790M/C797S complex were computed as -8.3 kcal/mol and -8.2 kcal/mol respectively. Meaningful results were achieved for these two compounds.
大蒜素和二烯丙基二硫化物(Homo-Lumo,Mep)的分子对接和反应位点鉴定:潜在的抗癌抑制剂
天然产品历来对药物治疗,尤其是癌症治疗做出了重大贡献。大蒜含有多种具有抗癌作用的生物活性分子,包括大蒜素和二烯丙基二硫化物。在这项研究中,利用 DFT 与功能 B3LYP 方法/6-31++G(d,p) 基集,在 Gaussian 09 W 中对大蒜素和二烯丙基二硫化物进行了优化计算。对药物相似性和 ADME 毒性进行了研究。通过分子对接研究了大蒜素和二烯丙基二硫化物的生物学知识。计算中首选的蛋白质是 5XGN、表皮生长因子受体突变体 T790M/C797S 复合物的晶体结构。计算得出大蒜素和二烯丙基二硫分子与表皮生长因子受体突变体 T790M/C797S 复合物的结合能分别为-8.3 kcal/mol 和-8.2 kcal/mol。这两种化合物都取得了有意义的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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