Solanki Amit Kumar, Acharya Abhishek, Kaushik Himani, Bhatia Bharti, Garg Lalit C
Gene Regulation Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi - 110067, India.
Bioinformation. 2021 Jun 30;17(6):628-636. doi: 10.6026/97320630017628. eCollection 2021.
Beta toxin from Clostridium perfringens after being secreted in gut is capable of causing necrotic enteritis in humans and several other animal species and does not respond to routinely used antibiotics. Therefore, there is a need to design an effective inhibitor for the Clostridium perfringens beta toxin (CPB) using cutting edge drug discovery technologies. Hence, potential CPB inhibitors were identified using computer aided screening of compounds from the ZINC database. Further, we document the molecular docking analysis of Clostridium perfringens beta toxin model (that revealed 4 binding pockets, A-D) with the identified potential inhibitors. We show that ZINC291192 [N-[(1-methylindol-3-yl) methyl eneamino]-7,10-dioxabicyclo[4.4.0]deca-2,4,11-triene-8- carboxamide] has optimal binding features with calculated binding energy of -10.38 kcal/mol and inhibition constant of 24.76 nM for further consideration.
产气荚膜梭菌分泌的β毒素在肠道内可导致人类和其他几种动物发生坏死性肠炎,且对常规使用的抗生素无反应。因此,有必要利用前沿的药物发现技术设计一种有效的产气荚膜梭菌β毒素(CPB)抑制剂。于是,通过对ZINC数据库中的化合物进行计算机辅助筛选,确定了潜在的CPB抑制剂。此外,我们记录了产气荚膜梭菌β毒素模型(该模型显示有4个结合口袋,A - D)与已确定的潜在抑制剂的分子对接分析。我们发现ZINC291192 [N - [(1 - 甲基吲哚 - 3 - 基)亚甲基氨基] - 7,10 - 二氧杂双环[4.4.0]癸 - 2,4,11 - 三烯 - 8 - 羧酰胺]具有最佳结合特性,计算得到的结合能为 - 10.38 kcal/mol,抑制常数为24.76 nM,值得进一步研究。