Department of Bioscience and Biotechnology, Sejong University , Seoul 143-747, Korea.
J Am Chem Soc. 2015 Jan 14;137(1):337-48. doi: 10.1021/ja510636t. Epub 2015 Jan 2.
IκB kinase β (IKKβ) is a useful target for the discovery of new medicines for cancer and inflammatory diseases. In this study, we aimed to identify new classes of potent IKKβ inhibitors based on structure-based virtual screening, de novo design, and chemical synthesis. To increase the probability of finding actual inhibitors, we improved the scoring function for the estimation of the IKKβ-inhibitor binding affinity by introducing proper solvation free energy and conformational destabilization energy terms for putative inhibitors. Using this modified scoring function, we have been able to identify 15 submicromolar-level IKKβ inhibitors that possess the phenyl-(4-phenyl-pyrimidin-2-yl)-amine moiety as the molecular core. Decomposition analysis of the calculated binding free energies showed that a high biochemical potency could be achieved by lowering the desolvation cost and the conformational destabilization for the inhibitor required for binding to IKKβ as well as by strengthening the interactions in the ATP-binding site. The formation of two hydrogen bonds with backbone amide groups of Cys99 in the hinge region was found to be necessary for tight binding of the inhibitors in the ATP-binding site. From molecular dynamics simulations of IKKβ-inhibitor complexes, we also found that complete dynamic stability of the bidentate hydrogen bond with Cys99 was required for low nanomolar-level inhibitory activity. This implies that the scoring function for virtual screening and de novo design would be further optimized by introducing an additional energy term to measure the dynamic stability of the key interactions in enzyme-inhibitor complexes.
IKKβ (IκB 激酶 β)是用于发现癌症和炎症性疾病新药的有用靶标。在这项研究中,我们旨在基于基于结构的虚拟筛选、从头设计和化学合成,鉴定新的强效 IKKβ抑制剂类别。为了增加找到实际抑制剂的可能性,我们通过引入适当的溶剂化自由能和构象去稳定化能项来提高估计 IKKβ-抑制剂结合亲和力的评分函数,以增加找到实际抑制剂的可能性。使用此修改后的评分函数,我们已经能够识别出 15 种亚微摩尔级别的 IKKβ 抑制剂,这些抑制剂具有苯并[4-苯基-嘧啶-2-基]胺作为分子核心。计算结合自由能的分解分析表明,通过降低抑制剂与 IKKβ结合所需的去溶剂化成本和构象去稳定化,以及加强 ATP 结合位点的相互作用,可以实现高生化效力。发现抑制剂在 ATP 结合位点中紧密结合需要与铰链区域的 Cys99 的骨干酰胺基团形成两个氢键。从 IKKβ-抑制剂复合物的分子动力学模拟中,我们还发现与 Cys99 的双氢键的完全动态稳定性对于低纳摩尔级别的抑制活性是必需的。这意味着通过引入额外的能量项来测量酶-抑制剂复合物中关键相互作用的动态稳定性,虚拟筛选和从头设计的评分函数将得到进一步优化。