多尺度计算模型鉴定新型化学支架海藻糖-6-磷酸磷酸酶抑制剂对抗假伯克霍尔德菌。

In silico pharmacology Pub Date : 2025-02-01 eCollection Date: 2025-01-01 DOI:10.1007/s40203-025-00309-5
Sara Noor, Mohammad Abdullah Aljasir, Maryam Bashir, Kalsoom Khan, Sajjad Ahmad, Syed Ainul Abideen, Saifullah Khan, Farhan Siddique, Hamza Ahmad, Khudija Ghani, Madiha Iqbal, Muhammad Irfan, Abbas Khan, Dong-Qing Wei
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引用次数: 0

摘要

假性伯克霍尔德菌引起类鼻疽,这是一种致命的感染,死亡率高(20-50%),并且对抗生素具有耐药性,然而,没有有效的药物或疫苗可用。海藻糖是假芽孢杆菌的重要食糖,影响病原菌的恢复力和致病性。这种提出的计算策略侧重于开发针对海藻糖-6-磷酸磷酸酶(TPP)的新型药物来对抗感染。本研究通过全面的基于结构的虚拟筛选,从Asinex、Zinc、Chembridge和Drugbank数据库中发现了三种新药。该方法筛选出的前3个化合物:BDG_34042863、BDF_33738612和DB00139以及对照化合物(2-甲基-6-苯氧四氢-2 h -吡喃-3,4,5-三醇)的结合能分别为-8.8 kcal/mol、-8.4 kcal/mol和- 7.7 kcal/mol、-6.4 kcal/mol。在分子动力学模拟中,配体-蛋白质复合物表现出大量的非共价相互作用以及稳定的停靠分子间结合构象。在整个MDS(分子动力学模拟)过程中,所研究的化合物表现出稳定一致的相互作用;在相互作用或结合模式上没有明显的变化。BDG_34042863、BDF_33738612和DB00139的平均偏差分别在Å中测量为4.04、7.18和7.10。此外,通过MM/GBSA分析复合物的模拟轨迹,结果显示对照、BDG_34042863、BDF_33738612和DB00139的结合亲和力分别为-33.39、-41.1、-49.16和- 41.29 kcal/mol。DFT分析表明,BDF_33738612的能隙最小(0.46 eV),反应活性高,而DB00139的能隙最大(5.66 eV),与对照相比具有良好的动力学稳定性。由于HOMO-1到LUMO + 1和HOMO-2到LUMO + 2轨道的能隙较大,分别在5.06 ~ 6.69 eV和5.66 ~ 7.09 eV之间,两种化合物的反应性和稳定性水平存在显著差异。这些化合物还具有良好的药代动力学特征,被归类为类药物。在所选化合物中,BDF_33738612表现出最有希望的结果,其次是BDG_34042863和DB00139。这些化合物可用于实验研究,以检测其对假芽孢杆菌的抗tpp活性。补充信息:在线版本包含补充资料,提供地址为10.1007/s40203-025-00309-5。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-scale computational modeling to identify novel chemical scaffolds as trehalose-6-phosphate phosphatase inhibitors to combat Burkholderia pseudomallei.

Burkholderia pseudomallei causes melioidosis, a deadly infection having high fatality rates (20-50%) and antibiotic resistance, however, there's no effective drug or vaccine available. Trehalose is a vital sugar for B. pseudomallei which influences the pathogen resilience and pathogenicity. This proposed computational strategy focuses on developing novel drugs against Trehalose-6-phosphate Phosphatase (TPP) to combat infections. This study found three novel drugs from Asinex, Zinc, Chembridge, and Drugbank databases through a comprehensive structure-based virtual screening. The process screened the top three compounds: BDG_34042863, BDF_33738612, and DB00139 along with control (2-methyl-6-phenoxytetrahydro-2 H-pyran-3,4,5-triol) with a binding energy score of -8.8 kcal/mol, -8.4 kcal/mol, and - 7.7 kcal/mol, -6.4 kcal/mol respectively. In a molecular dynamics simulation, the Ligand-protein complexes demonstrated substantial non-covalent interactions as well as a stable docked intermolecular binding conformation. Throughout the MDS (molecular dynamic simulation) period, the studied compounds showed stable consistent interactions; there were no noticeable changes in the interactions or binding mode. The BDG_34042863, BDF_33738612, and DB00139 had a mean deviation of 4.04, 7.18, and 7.10 measured in Å, respectively. In addition, the simulation trajectories of complexes underwent MM/GBSA analysis, which revealed binding affinity scores of -33.39, -41.1, -49.16, and - 41.29 measured in kcal/mol for the control, BDG_34042863, BDF_33738612, and DB00139, respectively. According to DFT Analysis, BDF_33738612 showed the smallest energy gap (0.46 eV), indicating high reactivity, while DB00139 showed the largest energy gap (5.66 eV), illustrating good kinetic stability compared to the control. The compounds exhibit notable differences in reactivity and stability levels as their HOMO-1 to LUMO + 1 and HOMO-2 to LUMO + 2 orbitals have greater energy gaps, ranging from 5.06 eV to 6.69 eV and 5.66 eV to 7.09 eV, respectively. The compounds also had favorable pharmacokinetic characteristics and were categorized as druglike. Among the selected compounds, BDF_33738612 demonstrated the most promising findings followed by BDG_34042863 and DB00139. The compounds may be employed in an experimental study to examine their anti-TPP activity against B. pseudomallei.

Supplementary information: The online version contains supplementary material available at 10.1007/s40203-025-00309-5.

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