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使用包括分子动力学、对接和量子化学方法在内的联合方法对抗菌和抗关节炎候选药物进行双重抑制研究。

Investigation of dual inhibition of antibacterial and antiarthritic drug candidates using combined approach including molecular dynamics, docking and quantum chemical methods.

作者信息

Muhammad Shabbir, Faiz Amina, Bibi Shamsa, Rehman Shafiq Ur, Alshahrani Mohammad Y

机构信息

Central labs, King Khalid University, AlQura'a, P. O. Box 906, Abha, Saudi Arabia; Department of Chemistry, College of Science, King Khalid University, P. O. Box 9004, Abha 61413, Saudi Arabia.

Department of Chemistry, University of Agriculture Faisalabad, Faisalabad 38000, Pakistan.

出版信息

Comput Biol Chem. 2024 Dec;113:108218. doi: 10.1016/j.compbiolchem.2024.108218. Epub 2024 Sep 30.

Abstract

Emerging antibiotic resistance in bacteria threatens immune efficacy and increases susceptibility to bone degradation and arthritic disorders. In our current study, we utilized a three-layer in-silico screening approach, employing quantum chemical methods, molecular docking, and molecular dynamic methods to explore the novel drug candidates similar in structure to floroquinolone (ciprofloxacin). We investigated the interaction of novel similar compounds of ciprofloxacin with both a bacterial protein S. aureus TyrRS (1JIJ) and a protein associated with gout arthritis Neutrophil collagenase (3DPE). UTIs and gout are interconnected through the elevation of uric acid levels. We aimed to identify compounds with dual functionality: antibacterial activity against UTIs and antirheumatic properties. Our screening based on several methods, sorted out six promising ligands. Four of these (L1, L2, L3, and L6) demonstrated favorable hydrogen bonding with both proteins and were selected for further analysis. These ligands showed binding affinities of -8.3 to -9.1 kcal/mol with both proteins, indicating strong interaction potential. Notably, L6 exhibited highest binding energies of -9.10 and -9.01 kcal/mol with S. aureus TyrRS and Neutrophil collagenase respectively. Additionally, the pkCSM online database conducted ADMET analysis on all lead ligand suggested that L6 might exhibit the highest intestinal absorption and justified total clearance rate. Moreover, L6 showed a best predicted inhibition constant with both proteins. The average RMSF values for all complex systems, namely L1, L2, L3 and L6 are 0.43 Å, 0.57 Å, 0.55 Å, and 0.51 Å, respectively where the ligand residues show maximum stability. The smaller energy gap of 3.85 eV between the HOMO and LUMO of the optimized molecule L1 and L6 suggests that these are biologically active compound. All the selected four drugs show considerable stabilization energy ranging from 44.78 to 103.87 kcal/mol, which means all four compounds are chemically and physically stable. Overall, this research opens exciting avenues for the development of new therapeutic agents with dual functionalities for antibacterial and antiarthritic drug designing.

摘要

细菌中不断出现的抗生素耐药性威胁着免疫功效,并增加了骨骼退化和关节炎疾病的易感性。在我们目前的研究中,我们采用了一种三层计算机模拟筛选方法,运用量子化学方法、分子对接和分子动力学方法,探索结构与氟喹诺酮(环丙沙星)相似的新型候选药物。我们研究了环丙沙星新型类似化合物与细菌蛋白金黄色葡萄球菌酪氨酰-tRNA合成酶(1JIJ)和与痛风性关节炎相关的蛋白中性粒细胞胶原酶(3DPE)之间的相互作用。尿路感染和痛风通过尿酸水平的升高相互关联。我们旨在鉴定具有双重功能的化合物:对尿路感染具有抗菌活性以及具有抗风湿特性。我们基于多种方法进行筛选,挑选出了六种有前景的配体。其中四种(L1、L2、L3和L6)与两种蛋白质均表现出良好的氢键作用,并被选作进一步分析。这些配体与两种蛋白质的结合亲和力在-8.3至-9.1千卡/摩尔之间,表明具有很强的相互作用潜力。值得注意的是,L6与金黄色葡萄球菌酪氨酰-tRNA合成酶和中性粒细胞胶原酶的结合能分别为-9.10和-9.01千卡/摩尔,为最高值。此外,pkCSM在线数据库对所有先导配体进行了药物代谢及药物动力学分析,结果表明L6可能具有最高的肠道吸收和合理的总清除率。此外,L6与两种蛋白质的预测抑制常数最佳。所有复合系统(即L1、L2、L3和L6)的平均均方根波动值分别为0.43埃、0.57埃、0.55埃和0.51埃,并在配体残基处表现出最大稳定性。优化后的分子L1和L6的最高占据分子轨道(HOMO)和最低未占分子轨道(LUMO)之间的能隙较小,为3.85电子伏特,表明这些是生物活性化合物。所有选定的四种药物均显示出相当可观的稳定能,范围在44.78至103.87千卡/摩尔之间,这意味着这四种化合物在化学和物理上都是稳定的。总体而言,这项研究为开发具有抗菌和抗关节炎双重功能的新型治疗药物开辟了令人兴奋的途径。

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