Verma Ankit, Kumar Vijay, Naik Bindu, Masood Khan Javed, Singh Pallavi, Erik Joakim Saris Per, Gupta Sanjay
Himalayan School of Biosciences, Swami Rama Himalayan University, Jolly Grant, Dehradun, Uttarakhand, India 248140.
Department of Food Science and Technology, Graphic Era (Deemed to be University), Bell Road, Clement Town, Dehradun 248002, Uttarakhand, India.
Saudi J Biol Sci. 2023 Aug;30(8):103730. doi: 10.1016/j.sjbs.2023.103730. Epub 2023 Jul 4.
(MTB) is becoming more and more resistant to drugs and it is a common problem, making current antimicrobials ineffective and highlighting the need for new TB drugs. One of the promising targets for treating MTB is MurB enzymes. This study aimed to identify potential inhibitors of MurB enzymes in , as drug resistance among MTB is a significant problem. Attempts are being made to conduct a virtual screening of 30,417 compounds, and thirty-two compounds were chosen for further analysis based on their binding conformations. The selected compounds were assessed for their drug-likeness, pharmacokinetics, and physiochemical characteristics, and seven compounds with binding energy lower than flavin (FAD) were identified. Further, molecular dynamics simulation analysis of these seven compounds found that four of them, namely DB12983, DB15688, ZINC084726167, and ZINC254071113 formed stable complexes with the MurB binding site, exhibiting promising inhibitory activity. These compounds have not been mentioned in any other study, indicating their novelty. The study suggests that these four compounds could be promising candidates for treating MTB, but their effectiveness needs to be validated through in vitro and in vivo experiments. Overall, the findings of this study provide new insight into potential drug targets and candidates for combating drug-resistant MTB.
结核分枝杆菌(MTB)对药物的耐药性越来越强,这是一个普遍问题,使得目前的抗菌药物失效,凸显了对新型抗结核药物的需求。治疗MTB的一个有前景的靶点是MurB酶。本研究旨在鉴定[具体物种]中MurB酶的潜在抑制剂,因为MTB的耐药性是一个重大问题。正在尝试对30417种化合物进行虚拟筛选,并根据其结合构象选择了32种化合物进行进一步分析。对所选化合物的类药性、药代动力学和理化特性进行了评估,鉴定出7种结合能低于黄素(FAD)的化合物。此外,对这7种化合物的分子动力学模拟分析发现,其中4种,即DB12983、DB15688、ZINC084726167和ZINC254071113与MurB结合位点形成了稳定的复合物,表现出有前景的抑制活性。这些化合物在任何其他研究中均未被提及,表明它们具有新颖性。该研究表明,这4种化合物可能是治疗MTB的有前景的候选药物,但它们的有效性需要通过体外和体内实验进行验证。总体而言,本研究的结果为对抗耐药MTB的潜在药物靶点和候选药物提供了新的见解。