Berg Maya, Bal Gunther, Goeminne Annelies, Van der Veken Pieter, Versées Wim, Steyaert Jan, Haemers Achiel, Augustyns Koen
Department of Medicinal Chemistry, University of Antwerp, Belgium.
ChemMedChem. 2009 Feb;4(2):249-60. doi: 10.1002/cmdc.200800231.
The purine metabolism of Trypanosoma and Leishmania spp. provides a good target in the search for new selective drugs. Bicyclic N-arylmethyl-substituted iminoribitols were developed as inhibitors of T. vivax nucleoside hydrolase, a key enzyme of the purine salvage pathway. The obtained results and structure-activity data confirmed our model for inhibitor binding with a hydrogen bond between a nitrogen atom of the nucleobase mimetic and the protonated Asp40 from the enzyme. This interaction depends on an optimal pK(a) value, which can be influenced by the electronic properties of the substituents. These compounds are potent, selective inhibitors of nucleoside hydrolase and are inactive toward human nucleoside phosphorylase.
锥虫属和利什曼原虫属的嘌呤代谢为寻找新型选择性药物提供了一个良好靶点。双环N-芳基甲基取代亚氨基糖醇被开发为间日疟原虫核苷水解酶的抑制剂,该酶是嘌呤补救途径的关键酶。所得结果和构效关系数据证实了我们提出的抑制剂结合模型,即拟碱基的氮原子与酶中质子化的天冬氨酸40之间形成氢键。这种相互作用取决于最佳的pK(a)值,该值会受到取代基电子性质的影响。这些化合物是核苷水解酶的强效、选择性抑制剂,对人核苷磷酸化酶无活性。