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Metal ion coordination in the E. coli Nudix hydrolase dihydroneopterin triphosphate pyrophosphatase: New clues into catalytic mechanism

机译:大肠杆菌Nudix水解酶二氢蝶呤三磷酸焦磷酸酶中的金属离子配位:催化机理的新线索

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摘要

Dihydroneopterin triphosphate pyrophosphatase (DHNTPase), a member of the Mg2+ dependent Nudix hydrolase superfamily, is the recently-discovered enzyme that functions in the second step of the pterin branch of the folate biosynthetic pathway in E. coli. DHNTPase is of interest because inhibition of enzymes in bacterial folate biosynthetic pathways is a strategy for antibiotic development. We determined crystal structures of DHNTPase with and without activating, Mg2+-mimicking metals Co2+ and Ni2+. Four metal ions, identified by anomalous scattering, and stoichiometrically confirmed in solution by isothermal titration calorimetry, are held in place by Glu56 and Glu60 within the Nudix sequence motif, Glu117, waters, and a sulfate ion, of which the latter is further stabilized by a salt bridge with Lys7. In silico docking of the DHNTP substrate reveals a binding mode in which the pterin ring moiety is nestled in a largely hydrophobic pocket, the β-phosphate activated for nucleophilic attack overlays with the crystallographic sulfate and is in line with an activated water molecule, and remaining phosphate groups are stabilized by all four identified metal ions. The structures and binding data provide new details regarding DHNTPase metal requirements, mechanism, and suggest a strategy for efficient inhibition.
机译:依赖于Mg 2 + 的Nudix水解酶超家族成员二氢蝶呤三磷酸焦磷酸酶(DHNTPase)是最近发现的在E叶酸生物合成途径的蝶呤分支第二步中起作用的酶。大肠杆菌。 DHNTPase是令人感兴趣的,因为抑制细菌叶酸生物合成途径中的酶是抗生素开发的策略。我们确定了带有和不带有激活态的,模仿Mg 2 + 和金属Co 2 + 和Ni 2 + 的DHNTPase的晶体结构。通过异常散射识别并通过等温滴定量热法在溶液中化学计量确定的四种金属离子,由Nudix序列基序中的Glu56和Glu60,Glu117,水和硫酸根离子保持在原位,后者通过与Lys7形成的盐桥。 DHNTP底物的计算机对接揭示了一种结合模式,其中蝶呤环部分嵌套在一个很大的疏水性口袋中,被亲核攻击激活的β-磷酸盐与结晶硫酸盐重叠,并且与被激活的水分子一致,并且剩余磷酸根基团被所有四个已识别的金属离子稳定。结构和结合数据提供了有关DHNTPase金属需求,机理的新细节,并提出了有效抑制的策略。

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