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A model for glutamate racemase inhibitors and glutamate racemase antibacterial agents

机译:谷氨酸消旋酶抑制剂和谷氨酸消旋酶抗菌剂的模型

摘要

The increase in antibacterial resistance has created the demand for new antibiotics. The present invention relates to a more potent antibiotic that targets the enzyme glutamate racemase from known glutamate racemase inhibitors. Glutamate racemase catalyses the interconversion of L-glutamate to D-glutamate, making D-glutamate available, which is required for bacterial peptidoglycan biosynthesis. Knockout mutations have shown glutamate racemase to be necessary for bacterial cell survival and, before the present invention, no antibiotic on the market targeted this enzyme. The present invention relates to new, ligand based glutamate racemase inhibitors, developed using software to extract a pharmacophore model from a group of known glutamate racemase inhibitors. Forty-seven (47) known inhibitors were collected from the literature and several pharmacophore models were extracted therefrom. The functional groups common to all the known inhibitors were included in a pharmacophore model that described the requirements for glutamate racemase inhibition with 82% accuracy. Of these models, one was found to describe the requirements for glutamate racemase inhibition with 82% accuracy. The model was used to search databases of commercially available chemical compounds and 2-(2-(1/i-indol-3-yl)ethylamino)-4-oxo-4-p-tolylbutanoic acid and 2-(2-(1//-indol-3-yl)ethylamino)-4-(4-fluorophenyl)-4-oxobutanoic acid were identified as showing antibacterial activity. These compounds were assayed against S. pneumoniae and were shown to have antibacterial activity against the non- virulent strain R6 and against a multidrug resistant strain.
机译:抗菌素耐药性的增加创造了对新抗生素的需求。本发明涉及一种更有效的抗生素,其靶向来自已知的谷氨酸消旋酶抑制剂的谷氨酸消旋酶。谷氨酸消旋酶催化L-谷氨酸向D-谷氨酸的相互转化,使得D-谷氨酸可利用,这是细菌肽聚糖生物合成所必需的。敲除突变表明谷氨酸消旋酶对于细菌细胞存活是必需的,并且在本发明之前,市场上没有抗生素靶向该酶。本发明涉及新的基于配体的谷氨酸消旋酶抑制剂,其是使用软件从一组已知的谷氨酸消旋酶抑制剂中提取药效团模型而开发的。从文献中收集了四十七(47)种已知的抑制剂,并从中提取了几种药效团模型。所有已知抑制剂共有的官能团均包括在药效团模型中,该模型描述了对谷氨酸消旋酶抑制的要求,准确度为82%。在这些模型中,发现一个模型可以以82%的精度描述对谷氨酸消旋酶抑制的要求。该模型用于搜索市售化合物和2-(2-(1 / i-吲哚-3-基)乙氨基)-4-氧代-4-对甲苯基丁酸和2-(2-(1 //-吲哚-3-基)乙氨基)-4-(4-氟苯基)-4-氧代丁酸被鉴定为显示抗菌活性。测定了这些化合物的抗肺炎链球菌,并显示出对非毒性菌株R6和对多药耐药菌株的抗菌活性。

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