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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of the Mycobacterium tuberculosis dUTPase: insights into the catalytic mechanism.
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Crystal structure of the Mycobacterium tuberculosis dUTPase: insights into the catalytic mechanism.

机译:结核分枝杆菌dUTPase的晶体结构:催化机制的见解。

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摘要

The structure of Mycobacterium tuberculosis dUTP nucleotidohydrolase (dUTPase) has been determined at 1.3 Angstrom resolution in complex with magnesium ion and the non-hydrolyzable substrate analog, alpha,beta-imido dUTP. dUTPase is an enzyme essential for depleting potentially toxic concentrations of dUTP in the cell. Given the importance of its biological role, it has been proposed that inhibiting M.tuberculosis dUTPase might be an effective means to treat tuberculosis infection in humans. The crystal structure presented here offers some insight into the potential for designing a specific inhibitor of the M.tuberculosis dUTPase enzyme. The structure also offers new insights into the mechanism of dUTP hydrolysis by providing an accurate representation of the enzyme-substrate complex in which both the metal ion and dUTP analog are included. The structure suggests that inclusion of a magnesium ion is important for stabilizing the position of the alpha-phosphorus for an in-line nucleophilic attack. In the absence of magnesium, the alpha-phosphate of dUTP can have either of the two positions which differ by 4.5 Angstrom. A transiently ordered C-terminal loop further assists catalysis by shielding the general base, Asp83, from solvent thus elevating its pK(a) so that it might in turn activate a tightly bound water molecule for nucleophilic attack. The metal ion coordinates alpha, beta, and gamma phosphate groups with tridentate geometry identical with that observed in the crystal structure of DNA polymerase beta complexed with magnesium and dNTP analog, revealing some common features in catalytic mechanism.
机译:结核分枝杆菌dUTP核苷酸水解酶(dUTPase)的结构已确定为1.3埃分辨率,与镁离子和不可水解的底物类似物α,β-亚氨基dUTP形成复合物。 dUTPase是消耗细胞中潜在毒性浓度的dUTP所必需的酶。考虑到其生物学作用的重要性,已经提出抑制结核分枝杆菌dUTPase可能是治疗人类结核感染的有效手段。这里介绍的晶体结构为设计结核分枝杆菌dUTPase酶的特定抑制剂的潜力提供了一些见识。该结构还提供了酶-底物复合物的精确表示,其中包括了金属离子和dUTP类似物,从而为dUTP水解机理提供了新的见解。该结构表明,镁离子的加入对于在线亲核攻击中稳定α-磷的位置很重要。在不存在镁的情况下,dUTP的α-磷酸酯可以具有相差4.5埃的两个位置之一。瞬态有序的C末端环可通过保护通用碱Asp83免受溶剂侵蚀,从而提高其pK(a),从而进一步协助催化反应,从而使其可能激活紧密结合的水分子以引起亲核攻击。金属离子配位的三齿几何结构的α,β和γ磷酸根与在与镁和dNTP类似物复合的DNA聚合酶β的晶体结构中观察到的相同,揭示了催化机理的一些共同特征。

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