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Catalytic center assembly of HPPK as revealed by the crystal structure of a ternary complex at 1.25 angstrom resolution

机译:1.25埃分辨率下三元配合物的晶体结构揭示了HPPK的催化中心组装

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Background: Folates are essential for life. Unlike mammals, most microorganisms must synthesize folates de novo. 6-Hydroxymethyl-7,8-dihydropterin pyrophosphokinase (HPPK) catalyzes pyrophosphoryl transfer from ATP to 6-hydroxymethyl-7,8-dihydropterin (HP), the first reaction in the folate pathway, and therefore is an ideal target for developing novel antimicrobial agents. HPPK from Escherichia coil is 158-residue thermostable protein that provides a convenient model system for mechanistic studies. Crystal structures have been reported for HPPK without bound ligand, containing an HP analog, and complexed with an HF analog, two Mg2+ ions, and ATP. Results: We present the 1.25 Angstrom crystal structure of HPPK in complex with HP, two Mg2+ ions, and AMPCPP (an ATP analog that inhibits the enzymatic reaction). This structure demonstrates that the enzyme seals the active center where the reaction occurs. The comparison with unligated HPPK reveals dramatic conformational changes of three flexible loops and many sidechains. The coordination of Mg2+ ions has been defined and the roles of 26 residues have been derived. Conclusions: HPPK-HP-MgAMPCPP mimics most closely the natural ternary complex of HPPK and provides details of protein-substrate interactions. The coordination of the two Mg2+ ions helps create the correct geometry for the one-step reaction of pyrophosphoryl transfer, for which we suggest an in-line single displacement mechanism with some associative character in the transition state. The rigidity of the adenine-binding pocket and hydrogen bonds are responsible for adenosine specificity. The nonconserved residues that interact with the substrate might be responsible for the species-dependent properties of an isozyme. [References: 23]
机译:背景:叶酸对生命至关重要。与哺乳动物不同,大多数微生物必须从头合成叶酸。 6-羟甲基-7,8-二氢蝶呤焦磷酸激酶(HPPK)催化焦磷酸基从ATP转移至6-羟甲基-7,8-二氢蝶呤(HP)(叶酸途径中的第一个反应),因此是开发新型抗菌素的理想靶标代理商。大肠埃希氏菌中的HPPK是158个残基的热稳定蛋白,为机理研究提供了方便的模型系统。已经报道了不具有结合配体的HPPK的晶体结构,其包含HP类似物,并与HF类似物,两个Mg 2+离子和ATP络合。结果:我们提出了与HP,两个Mg2 +离子和AMPCPP(一种抑制酶促反应的ATP类似物)复合的HPPK的1.25埃晶体结构。该结构表明酶密封了反应发生的活性中心。与未连接的HPPK的比较揭示了三个柔性环和许多侧链的显着构象变化。已经定义了Mg2 +离子的配位作用,并推导了26个残基的作用。结论:HPPK-HP-MgAMPCPP最紧密地模拟了HPPK的天然三元复合物,并提供了蛋白质-底物相互作用的详细信息。两个Mg2 +离子的配位有助于为焦磷酸基转移的一步反应创建正确的几何结构,为此,我们提出了一种在过渡态下具有某些缔合特征的串联单位移机理。腺嘌呤结合口袋和氢键的刚性决定了腺苷的特异性。与底物相互作用的非保守残基可能与同工酶的物种依赖性有关。 [参考:23]

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