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首页> 外文期刊>Journal of Molecular Biology >TOWARDS STRUCTURE-BASED DRUG DESIGN - CRYSTAL STRUCTURE OF A MULTISUBSTRATE ADDUCT COMPLEX OF GLYCINAMIDE RIBONUCLEOTIDE TRANSFORMYLASE AT 1.96 ANGSTROM RESOLUTION
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TOWARDS STRUCTURE-BASED DRUG DESIGN - CRYSTAL STRUCTURE OF A MULTISUBSTRATE ADDUCT COMPLEX OF GLYCINAMIDE RIBONUCLEOTIDE TRANSFORMYLASE AT 1.96 ANGSTROM RESOLUTION

机译:朝着基于结构的药物设计-甘氨酸酰胺酸核糖核酸转化甲酰酶在1.96的分辨率下的多基团复合物的晶体结构

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摘要

An inhibitor complex structure of glycinamide ribonucleotide transformylase (GAR-Tfase; EC 2.1.2.2) from Escherichia coli has been determined with a multisubstrate adduct BW1476U89 to an X-value of 19.1% at 1.96 Angstrom resolution. The structure was determined by a combination of molecular and single isomorphous replacement using data from two different monoclinic crystal lattices and collecting data from crystals soaked in 20% (w/v) methyl-pentanediol as cryoprotectant for shock-freezing at -150 degrees C. The multisubstrate adduct is bound in an extended crevice at the interface between the two functional domains of the enzyme. This inhibitor is positioned in the binding site by three sets of tight interactions with its phosphate, glutamate and pyrimidone ring moieties, while its intervening linker atoms are more flexible and adopt two distinct sets of conformations. The highly conserved Arg103, His108 and Gln170 residues that are key in ligand binding and catalysis (His108), have compensatory conformational variation that gives some clues as to their role in substrate specificity and in the formyl transfer. The molecular design of 1476U89 as a multisubstrate adduct inhibitor (K-i similar to 100 pM at pH 8.5), is confirmed as it closely mimics the shape, molecular interaction and combined binding constants of the natural 10-formyltetrahydrofolate (10-CHO-H4F; K-m approximate to 77.4 mu M at pH 8.5) and glycinamide-ribonucleotide (GAR; K-m approximate to 8.1 mu M at pH 8.5) substrates. The stereochemistry of this ligand complex suggests that His108 may act as an electrophile stabilizing the oxyanion of the tetrahedral intermediate that is formed as a result of the direct attack on the 10-CHO-H4F by the amino group of GAR. Structural comparison of the folate binding modes among GAR-Tfase, dihydrofolate reductase and thymidylate synthase reveals that folate derivates bound to GAR-Tfase differentially adopt the trans conformation for the dihedral angle between atoms C-6 and C-9 providing a handle for targeting specific folate-dependent enzymes. The structural information derived from two different discrete conformations of the ligand in the binding site also suggests several leads for the de novo design of inhibitors of GAR-Tfase that may develop into useful chemotherapeutic agents. [References: 78]
机译:已经用多底物加合物BW1476U89测定了来自大肠杆菌的甘氨酰胺核糖核苷酸转化酶(GAR-Tfase; EC 2.1.2.2)的抑制剂复合物结构,其X值在1.96埃时为19.1%。通过使用两个不同的单斜晶格的数据并从浸泡在20%(w / v)甲基戊二醇作为冷冻保护剂的晶体中收集分子的数据,通过分子和单一同构置换的组合来确定结构,以在-150摄氏度下进行冲击冻结。多底物加合物在酶的两个功能结构域之间的界面处的扩展缝隙中结合。该抑制剂通过与其磷酸盐,谷氨酸和嘧啶酮环部分的三组紧密相互作用而位于结合位点,而其间的连接原子更灵活并采用两组不同的构象。在配体结合和催化(His108)中至关重要的高度保守的Arg103,His108和Gln170残基具有补偿性构象变异,这为它们在底物特异性和甲酰基转移中的作用提供了一些线索。 1476U89作为多底物加合物抑制剂的分子设计(Ki在pH 8.5时类似于100 pM)被证实,因为它紧密模拟了天然10-甲酰基四氢叶酸(10-CHO-H4F; Km)的形状,分子相互作用和结合常数底物在pH 8.5时约为77.4μM)和甘氨酰胺-核糖核苷酸(GAR;在pH 8.5时Km约为8.1μM)底物。该配体络合物的立体化学表明,His108可以充当稳定四面体中间体氧阴离子的亲电子试剂,该四面体中间体是由于GAR氨基直接攻击10-CHO-H4F而形成的。 GAR-Tfase,二氢叶酸还原酶和胸苷酸合酶之间的叶酸结合模式的结构比较显示,与GAR-Tfase结合的叶酸衍生物不同地采用了原子C-6和C-9之间二面角的反式构象,为靶向特异性叶酸依赖性酶。源自结合位点的两个不同离散构象的结构信息也提示了GAR-Tfase抑制剂从头设计的几条线索,这些线索可能发展为有用的化学治疗剂。 [参考:78]

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