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A Novel Allosteric Inhibitor of the Uridine Diphosphate N-Acetylglucosamine Pyrophosphorylase from Trypanosomabrucei

机译:新型锥虫尿嘧啶二磷酸N-乙酰氨基葡萄糖焦磷酸化酶的变构抑制剂布鲁西

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摘要

Uridine diphosphate N-acetylglucosamine pyrophosphorylase (UAP) catalyzes the final reaction in the biosynthesis of UDP-GlcNAc, an essential metabolite in many organisms including Trypanosoma brucei, the etiological agent of Human African Trypanosomiasis. High-throughput screening of recombinant T. brucei UAP identified a UTP-competitive inhibitor with selectivity over the human counterpart despite the high level of conservation of active site residues. Biophysical characterization of the UAP enzyme kinetics revealed that the human and trypanosome enzymes both display a strictly ordered bi–bi mechanism, but with the order of substrate binding reversed. Structural characterization of the T. brucei UAP–inhibitor complex revealed that the inhibitor binds at an allosteric site absent in the human homologue that prevents the conformational rearrangement required to bind UTP. The identification of a selective inhibitory allosteric binding site in the parasite enzyme has therapeutic potential.
机译:尿苷二磷酸N-乙酰氨基葡糖焦磷酸化酶(UAP)催化UDP-GlcNAc的生物合成中的最终反应,UDP-GlcNAc是包括人类非洲锥虫病的病原体布鲁氏锥虫在内的许多生物体中的必需代谢产物。重组布鲁氏菌UAP的高通量筛选确定了一种UTP竞争性抑制剂,尽管活性位点残基的保守程度很高,但其选择性优于人类同行。 UAP酶动力学的生物物理特征表明,人类和锥虫酶均显示严格有序的bi-bi机制,但底物结合的顺序却相反。 T. brucei UAP-抑制剂复合物的结构表征表明,该抑制剂与人同源物中不存在的变构位点结合,从而阻止了结合UTP所需的构象重排。鉴定寄生虫酶中的选择性抑制性变构结合位点具有治疗潜力。

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