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Exploring the Binding Mechanisms of Diaminopimelic Acid Analogs to meso-Diaminopimelate Dehydrogenase by Molecular Modeling

机译:通过分子模型探索二氨基庚二酸类似物与中二氨基己二酸脱氢酶的结合机理

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摘要

Meso-Diaminopimelic acid (meso-2,6-diamino-heptanedioic acid, DAP) is an important component of the cell wall of many bacteria. Meso-diaminopimelate dehydrogenase (m-Ddh) is a critical enzyme in the process of converting tetrahydrodipicolinate to DAP. Here, we are proposing that DAP analogs targeting m-Ddh may be considered as potential antibiotics. Four DAP analogs without significant structural change from DAP have been obtained and their inhibitory potencies against m-Ddh from the P. gingivalis strain W83 show significant differences from that of DAP. However, their inhibitory mechanisms as for how simple structural change influences the inhibitory potency remain unknown. Therefore, we employed molecular modeling methods to obtain insight into the inhibitory mechanisms of DAP and analogs with m-Ddh. The predicted binding mode of DAP was highly consistent with the experimental structural data and disclosed the important roles played by the binding pocket residues. According to our predictions, the isoxazoline ring of compounds 1 and 2 and the double bonds in compounds 3 and 4 had distinct influences on these compounds’ binding to m-Ddh. This enriched understanding of the inhibitory mechanisms of DAP and these four analogs to m-Ddh has provided new and relevant information for future rational development of potent inhibitors targeting m-Ddh.
机译:介孔二氨基庚二酸(meso-2,6-diamino-heptanedioicic acid,DAP)是许多细菌细胞壁的重要组成部分。内消旋二氨基庚二酸酯脱氢酶(m-Ddh)是将四氢二吡啶甲酸转化为DAP的关键酶。在这里,我们建议靶向m-Ddh的DAP类似物可被视为潜在的抗生素。获得了四种与DAP相比无显着结构变化的DAP类似物,并且它们对齿龈假单胞菌菌株W83对m-Ddh的抑制力与DAP表现出显着差异。然而,关于其简单的结构变化如何影响抑制能力的抑制机制仍然未知。因此,我们采用分子建模方法来深入了解DAP和m-Ddh类似物的抑制机制。 DAP的预测结合模式与实验结构数据高度一致,并揭示了结合口袋残基发挥的重要作用。根据我们的预测,化合物1和2的异恶唑啉环以及化合物3和4中的双键对这些化合物与m-Ddh的结合具有明显的影响。对DAP和m-Ddh的这四个类似物的抑制机制的丰富理解为将来针对m-Ddh的有效抑制剂的合理开发提供了新的相关信息。

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