利用结构测定和片段筛选感染性疾病药物靶标:伪伯克氏菌MECP合成酶。

Darren W Begley, Robert C Hartley, Douglas R Davies, Thomas E Edwards, Jess T Leonard, Jan Abendroth, Courtney A Burris, Janhavi Bhandari, Peter J Myler, Bart L Staker, Lance J Stewart
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引用次数: 18

摘要

作为西雅图传染病结构基因组学中心的一部分,我们寻求通过配体结合结构数据来增强结构基因组学,这些数据可以作为基于结构的药物设计的蓝图。我们已经将基于片段的筛选方法应用于我们的结构基因组学管道,以从致病生物中产生高优先级药物靶点的多个配体结合结构。在这项研究中,我们报道了从引起类melidosis的革兰氏阴性菌Burkholderia pseudomallei中提取的c -甲基-d -赤藓糖醇-2,4-环二磷酸(MECP)合成酶的片段筛选方法和结构测定结果。通过核磁共振波谱以及晶体浸泡和x射线衍射的筛选,鉴定出了几个在关键代谢途径中结合该酶的小分子。通过筛选hit获得的一系列复杂结构揭示了不同的结合口袋和一系列与靶标形成复合物的小分子。这些化合物的额外浸泡进一步证明了片段的子集仅在以特定组合存在时才与蛋白质结合。这个片段结合复合物的集合阐明了MECP合成酶的几个特征,包括催化活性位点外的一个以前未知的结合表面。这些配体结合结构现在可以指导药物化学家和结构生物学家合理设计这种酶的新型抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Leveraging structure determination with fragment screening for infectious disease drug targets: MECP synthase from Burkholderia pseudomallei.

As part of the Seattle Structural Genomics Center for Infectious Disease, we seek to enhance structural genomics with ligand-bound structure data which can serve as a blueprint for structure-based drug design. We have adapted fragment-based screening methods to our structural genomics pipeline to generate multiple ligand-bound structures of high priority drug targets from pathogenic organisms. In this study, we report fragment screening methods and structure determination results for 2C-methyl-D-erythritol-2,4-cyclo-diphosphate (MECP) synthase from Burkholderia pseudomallei, the gram-negative bacterium which causes melioidosis. Screening by nuclear magnetic resonance spectroscopy as well as crystal soaking followed by X-ray diffraction led to the identification of several small molecules which bind this enzyme in a critical metabolic pathway. A series of complex structures obtained with screening hits reveal distinct binding pockets and a range of small molecules which form complexes with the target. Additional soaks with these compounds further demonstrate a subset of fragments to only bind the protein when present in specific combinations. This ensemble of fragment-bound complexes illuminates several characteristics of MECP synthase, including a previously unknown binding surface external to the catalytic active site. These ligand-bound structures now serve to guide medicinal chemists and structural biologists in rational design of novel inhibitors for this enzyme.

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Structural Genomics: General Applications Classification of ligand molecules in PDB with graph match-based structural superposition HOMCOS: an updated server to search and model complex 3D structures. NLDB: a database for 3D protein-ligand interactions in enzymatic reactions. Toward the next step in G protein-coupled receptor research: a knowledge-driven analysis for the next potential targets in drug discovery
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