Faculty of Arts and Sciences, Department of Chemistry, Bozok University, Yozgat, Turkey.
Faculty of Sciences, Department of Chemistry, Erciyes University, Kayseri, Turkey.
Arch Pharm (Weinheim). 2018 Oct;351(10):e1800165. doi: 10.1002/ardp.201800165. Epub 2018 Aug 31.
Pyrrole carboxamide rings are rarely used as active scaffold in designing inhibitors for enzymes. Herein, we described the structure-activity relationship for novel xanthine oxidase inhibitors based on the pyrrole carboxamide scaffold. A series of novel-substituted pyrrole carboxamide derivatives were synthesized and characterized; their in vitro and in silico inhibitory activities were determined against xanthine oxidase. Among these compounds, those which contain no substituent and one methyl group at the para-position of the phenyl moiety in the main structure, respectively, were found out as most active according to the xanthine oxidase inhibition activity study. In silico techniques reveal why these compounds display more activities than others, based on their binding interactions with xanthine oxidase and the surface scanning results of the enzyme. Furthermore, the binding energy calculations displayed good agreement with the experimental activity values.
吡咯甲酰胺环很少被用作设计酶抑制剂的活性支架。在此,我们描述了基于吡咯甲酰胺支架的新型黄嘌呤氧化酶抑制剂的结构-活性关系。合成并表征了一系列新型取代吡咯甲酰胺衍生物,测定了它们对黄嘌呤氧化酶的体外和计算抑制活性。在这些化合物中,根据黄嘌呤氧化酶抑制活性研究,发现那些在主结构的苯环部分的对位没有取代基和一个甲基的化合物是最活跃的。基于化合物与黄嘌呤氧化酶的结合相互作用和酶的表面扫描结果,计算技术揭示了为什么这些化合物比其他化合物具有更高的活性。此外,结合能计算与实验活性值吻合较好。