Sgrignani Jacopo, Novati Beatrice, Colombo Giorgio, Grazioso Giovanni
ICRM-CNR, Via Mario Bianco 9, 20131, Milan, Italy.
J Comput Aided Mol Des. 2015 May;29(5):441-50. doi: 10.1007/s10822-015-9834-7. Epub 2015 Feb 13.
AmpC β-lactamase is a hydrolytic enzyme conferring resistance to β-lactam antibiotics in multiple Gram-negative bacteria. Therefore, identification of non-β-lactam compounds able to inhibit the enzyme is crucial for the development of novel antibacterial therapies. In general, AmpC inhibitors have to engage the highly solvent-exposed catalytic site of the enzyme. Therefore, understanding the implications of ligand-protein induced-fit and water-mediated interactions behind the inhibitor-enzyme recognition process is fundamental for undertaking structure-based drug design process. Here, we focus on boronic acids, a promising class of beta-lactamase covalent inhibitors. First, we optimized a docking protocol able to reproduce the experimentally determined binding mode of AmpC inhibitors bearing a boronic group. This goal was pursued (1) performing rigid and flexible docking calculations aiming to establish the role of the side chain conformations; and (2) investigating the role of specific water molecules in shaping the enzyme active site and mediating ligand protein interactions. Our calculations showed that some water molecules, conserved in the majority of the considered X-ray structures, are needed to correctly predict the binding pose of known covalent AmpC inhibitors. On this basis, we formalized our findings in a docking and scoring protocol that could be useful for the structure-based design of new boronic acid AmpC inhibitors.
AmpC β-内酰胺酶是一种水解酶,可使多种革兰氏阴性菌对β-内酰胺类抗生素产生耐药性。因此,鉴定能够抑制该酶的非β-内酰胺化合物对于新型抗菌疗法的开发至关重要。一般来说,AmpC抑制剂必须与该酶高度暴露于溶剂中的催化位点结合。因此,了解配体-蛋白质诱导契合以及抑制剂-酶识别过程背后的水介导相互作用对于开展基于结构的药物设计过程至关重要。在此,我们聚焦于硼酸,这是一类有前景的β-内酰胺酶共价抑制剂。首先,我们优化了一种对接方案,该方案能够重现带有硼酸基团的AmpC抑制剂的实验测定结合模式。这一目标通过以下方式实现:(1)进行刚性和柔性对接计算,旨在确定侧链构象的作用;(2)研究特定水分子在塑造酶活性位点和介导配体-蛋白质相互作用中的作用。我们的计算表明,在大多数所考虑的X射线结构中保守的一些水分子,对于正确预测已知共价AmpC抑制剂的结合姿势是必需的。在此基础上,我们将研究结果整理成一种对接和评分方案,该方案可能有助于基于结构设计新型硼酸AmpC抑制剂。