Wang Xuequan, Lu Meiling, Shi Yang, Ou Yu, Cheng Xiaodong
School of Life Science and Technology, China Pharmaceutical University, Nanjing, People's Republic of China.
Department of Integrative Biology & Pharmacology, The University of Texas Health Science Center, Houston, United States of America.
PLoS One. 2015 Mar 3;10(3):e0118290. doi: 10.1371/journal.pone.0118290. eCollection 2015.
The emergence of NDM-1 containing multi-antibiotic resistant "Superbugs" necessitates the needs of developing of novel NDM-1inhibitors. In this study, we report the discovery of novel NDM-1 inhibitors by multi-step virtual screening. From a 2,800,000 virtual drug-like compound library selected from the ZINC database, we generated a focused NDM-1 inhibitor library containing 298 compounds of which 44 chemical compounds were purchased and evaluated experimentally for their ability to inhibit NDM-1 in vitro. Three novel NDM-1 inhibitors with micromolar IC50 values were validated. The most potent inhibitor, VNI-41, inhibited NDM-1 with an IC50 of 29.6 ± 1.3 μM. Molecular dynamic simulation revealed that VNI-41 interacted extensively with the active site. In particular, the sulfonamide group of VNI-41 interacts directly with the metal ion Zn1 that is critical for the catalysis. These results demonstrate the feasibility of applying virtual screening methodologies in identifying novel inhibitors for NDM-1, a metallo-β-lactamase with a malleable active site and provide a mechanism base for rational design of NDM-1 inhibitors using sulfonamide as a functional scaffold.
含有NDM-1的多重耐药“超级细菌”的出现,使得开发新型NDM-1抑制剂成为必要。在本研究中,我们报告了通过多步虚拟筛选发现新型NDM-1抑制剂的过程。从ZINC数据库中选出的280万个类药物虚拟化合物库中,我们生成了一个包含298种化合物的聚焦NDM-1抑制剂库,其中44种化合物被购买并进行体外抑制NDM-1能力的实验评估。验证了三种IC50值为微摩尔级的新型NDM-1抑制剂。最有效的抑制剂VNI-41抑制NDM-1的IC50为29.6±1.3μM。分子动力学模拟显示VNI-41与活性位点广泛相互作用。特别是,VNI-41的磺酰胺基团直接与对催化至关重要的金属离子Zn1相互作用。这些结果证明了应用虚拟筛选方法鉴定新型NDM-1抑制剂的可行性,NDM-1是一种具有可塑性活性位点的金属β-内酰胺酶,并为以磺酰胺为功能支架合理设计NDM-1抑制剂提供了机制基础。