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Potent Inhibitors of a Shikimate Pathway Enzyme from Mycobacterium tuberculosis

机译:结核分枝杆菌的Shikimate途径酶的有效抑制剂

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摘要

Tuberculosis remains a serious global health threat, with the emergence of multidrug-resistant strains highlighting the urgent need for novel antituberculosis drugs. The enzyme 3-deoxy-d-arabino-heptulosonate 7-phosphate synthase (DAH7PS) catalyzes the first step of the shikimate pathway for the biosynthesis of aromatic compounds. This pathway has been shown to be essential in Mycobacterium tuberculosis, the pathogen responsible for tuberculosis. DAH7PS catalyzes a condensation reaction between P-enolpyruvate and erythrose 4-phosphate to give 3-deoxy-d-arabino-heptulosonate 7-phosphate. The enzyme reaction mechanism is proposed to include a tetrahedral intermediate, which is formed by attack of an active site water on the central carbon of P-enolpyruvate during the course of the reaction. Molecular modeling of this intermediate into the active site reported in this study shows a configurational preference consistent with water attack from the re face of P-enolpyruvate. Based on this model, we designed and synthesized an inhibitor of DAH7PS that mimics this reaction intermediate. Both enantiomers of this intermediate mimic were potent inhibitors of M. tuberculosis DAH7PS, with inhibitory constants in the nanomolar range. The crystal structure of the DAH7PS-inhibitor complex was solved to 2.35 Å. Both the position of the inhibitor and the conformational changes of active site residues observed in this structure correspond closely to the predictions from the intermediate modeling. This structure also identifies a water molecule that is located in the appropriate position to attack the re face of P-enolpyruvate during the course of the reaction, allowing the catalytic mechanism for this enzyme to be clearly defined.
机译:结核病仍然是严重的全球健康威胁,多重耐药菌株的出现凸显了对新型抗结核药物的迫切需求。 3-脱氧-d-阿拉伯糖-庚二酸7-磷酸合酶(DAH7PS)催化sh草酸酯途径的第一步,用于芳香族化合物的生物合成。已证明该途径在结核分枝杆菌(结核病的病原体)中是必不可少的。 DAH7PS催化P-烯醇丙酮酸和四糖赤藓糖之间的缩合反应,生成3-脱氧-d-阿拉伯糖基庚酸7-磷酸酯。提出该酶反应机理包括四面体中间体,其是通过在反应过程中活性位点水攻击P-烯醇丙酮酸的中心碳而形成的。这项研究报道了该中间体进入活性位点的分子模型,其构型偏好与P-烯醇丙酮酸表面的水攻击相一致。基于此模型,我们设计并合成了模仿该反应中间体的DAH7PS抑制剂。该中间体模拟物的两种对映异构体均为结核分枝杆菌DAH7PS的有效抑制剂,其抑制常数在纳摩尔范围内。 DAH7PS-抑制剂复合物的晶体结构解析为2.35Å。在该结构中观察到的抑制剂的位置和活性位点残基的构象变化都与中间模型的预测密切对应。该结构还鉴定了在反应过程中位于适当位置以攻击P-烯醇丙酮酸的表面的水分子,从而可以清楚地确定该酶的催化机理。

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