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Identifying Ortholog Selective Fragment Molecules for Bacterial Glutaredoxins by NMR and Affinity Enhancement by Modification with an Acrylamide Warhead

机译:通过用丙烯酰胺弹头的改性,通过NMR和亲和力提高鉴定细菌谷氨酸的直肠选择性片段分子

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Illustrated here is the development of a new class of antibiotic lead molecules targeted at Pseudomonas aeruginosa glutaredoxin (PaGRX). This lead was produced to (a) circumvent efflux-mediated resistance mechanisms via covalent inhibition while (b) taking advantage of species selectivity to target a fundamental metabolic pathway. This work involved four components: a novel workflow for generating protein specific fragment hits via independent nuclear magnetic resonance (NMR) measurements, NMR-based modeling of the target protein structure, NMR guided docking of hits, and synthetic modification of the fragment hit with a vinyl cysteine trap moiety, i.e., acrylamide warhead, to generate the chimeric lead. Reactivity of the top warhead-fragment lead suggests that the ortholog selectivity observed for a fragment hit can translate into a substantial kinetic advantage in the mature warhead lead, which bodes well for future work to identify potent, species specific drug molecules targeted against proteins heretofore deemed undruggable.
机译:这里说明的是在铜绿假单胞菌谷氨酸毒素(PAGRX)上靶向的新类抗生素铅分子的发展。通过共价抑制产生该铅,通过共价抑制,利用物种选择性来靶向基本代谢途径,产生该铅。这项工作涉及四种组分:一种新的工作流程,用于通过独立的核磁共振(NMR)测量来产生蛋白质特异性片段命中,基于NMR的靶蛋白结构的模型,NMR引导对接的次数和碎片的合成改性乙烯基半胱氨酸捕集部分,即丙烯酰胺弹头,产生嵌合铅。顶级弹头片段铅的反应性表明,对于片段击中观察到的正交选择性可以转化为成熟的弹头铅中的大量动力学优势,该优点是未来工作识别有效的型效果,靶向迄今为止靶向蛋白质的物种特异性药物分子不驾驭。

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