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Elaboration of a fragment library hit produces potent and selective aspartate semialdehyde dehydrogenase inhibitors

机译:精心制作的片段文库可产生有效的选择性天冬氨酸半醛脱氢酶抑制剂

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Aspartate-beta-semialdehyde dehydrogenase (ASADH) lies at the first branch point in the aspartate metabolic pathway which leads to the biosynthesis of several essential amino acids and some important metabolites. This pathway is crucial for many metabolic processes in plants and microbes like bacteria and fungi, but is absent in mammals. Therefore, the key microbial enzymes involved in this pathway are attractive potential targets for development of new antibiotics with novel modes of action. The ASADH enzyme family shares the same substrate binding and active site catalytic groups; however, the enzymes from representative bacterial and fungal species show different inhibition patterns when previously screened against low molecular weight inhibitors identified from fragment library screening. In the present study several approaches, including fragment based drug discovery (FBDD), inhibitor docking, kinetic, and structure-activity relationship (SAR) studies have been used to guide ASADH inhibitor development. Elaboration of a core structure identified by FBDD has led to the synthesis of low micromolar inhibitors of the target enzyme, with high selectivity introduced between the Gram-negative and Gram-positive orthologs of ASADH. This new set of structures open a novel direction for the development of inhibitors against this validated drug-target enzyme. (c) 2015 Elsevier Ltd. All rights reserved.
机译:天冬氨酸-β-半醛脱氢酶(ASADH)位于天冬氨酸代谢途径的第一个分支点,该途径导致几种必需氨基酸和一些重要代谢物的生物合成。该途径对于植物和微生物(如细菌和真菌)的许多代谢过程至关重要,而在哺乳动物中则不存在。因此,参与该途径的关键微生物酶是具有新作用方式的新型抗生素开发的潜在潜在靶标。 ASADH酶家族具有相同的底物结合和活性位点催化基团;但是,当事先针对从片段文库筛选中鉴定出的低分子量抑制剂进行筛选时,来自代表性细菌和真菌物种的酶显示出不同的抑制模式。在本研究中,几种方法包括基于片段的药物发现(FBDD),抑制剂对接,动力学和结构-活性关系(SAR)研究已用于指导ASADH抑制剂的开发。通过FBDD鉴定的核心结构的精细化已经导致了目标酶的低微摩尔抑制剂的合成,并且在ASADH的革兰氏阴性和革兰氏阳性直向同源物之间引入了高选择性。这套新的结构为开发针对这种经过验证的药物靶标酶的抑制剂开辟了新的方向。 (c)2015 Elsevier Ltd.保留所有权利。

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