Department of Biochemistry and Molecular Biology, University of Texas Medical Branch , Galveston, Texas 77550 United States.
Department of Chemistry and Center for Innovative Drug Discovery, University of Texas at San Antonio , San Antonio, Texas 78249 United States.
J Med Chem. 2017 Jun 22;60(12):5015-5028. doi: 10.1021/acs.jmedchem.7b00389. Epub 2017 Jun 12.
Nicotinamide N-methyltransferase (NNMT) is a fundamental cytosolic biotransforming enzyme that catalyzes the N-methylation of endogenous and exogenous xenobiotics. We have identified small molecule inhibitors of NNMT with >1000-fold range of activity and developed comprehensive structure-activity relationships (SARs) for NNMT inhibitors. Screening of N-methylated quinolinium, isoquinolinium, pyrididium, and benzimidazolium/benzothiazolium analogues resulted in the identification of quinoliniums as a promising scaffold with very low micromolar (IC ∼ 1 μM) NNMT inhibition. Computer-based docking of inhibitors to the NNMT substrate (nicotinamide)-binding site produced a robust correlation between ligand-enzyme interaction docking scores and experimentally calculated IC values. Predicted binding orientation of the quinolinium analogues revealed selective binding to the NNMT substrate-binding site residues and essential chemical features driving protein-ligand intermolecular interactions and NNMT inhibition. The development of this new series of small molecule NNMT inhibitors direct the future design of lead drug-like inhibitors to treat several metabolic and chronic disease conditions characterized by abnormal NNMT activity.
烟酰胺 N-甲基转移酶(NNMT)是一种基本的细胞溶质生物转化酶,可催化内源性和外源性外源物质的 N-甲基化。我们已经鉴定出具有 >1000 倍活性范围的 NNMT 小分子抑制剂,并针对 NNMT 抑制剂开发了全面的结构-活性关系(SAR)。对 N-甲基化的喹啉鎓、异喹啉鎓、吡啶鎓和苯并咪唑鎓/苯并噻唑鎓类似物的筛选导致鉴定出喹啉鎓作为一种很有前途的支架,其对 NNMT 的抑制作用非常低,微摩尔级(IC∼1μM)。抑制剂与 NNMT 底物(烟酰胺)结合位点的计算机对接产生了配体-酶相互作用对接评分与实验计算的 IC 值之间的强相关性。喹啉鎓类似物的预测结合取向揭示了对 NNMT 底物结合位点残基的选择性结合以及驱动蛋白-配体分子间相互作用和 NNMT 抑制的必需化学特征。这一系列新的小分子 NNMT 抑制剂的开发为治疗几种代谢和慢性疾病状态提供了指导,这些疾病状态的特征是 NNMT 活性异常。