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首页> 外文期刊>ChemMedChem >Targeting an Aromatic Hotspot in Plasmodium falciparum 1-Deoxy-d-xylulose-5-phosphate Reductoisomerase with -Arylpropyl Analogues of Fosmidomycin
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Targeting an Aromatic Hotspot in Plasmodium falciparum 1-Deoxy-d-xylulose-5-phosphate Reductoisomerase with -Arylpropyl Analogues of Fosmidomycin

机译:靶向与恶草霉素的-芳丙基类似物的恶性疟原虫1-脱氧-d-木酮糖-5-磷酸还原异构酶中的芳香族热点

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摘要

Blocking the 2-C-methyl-d-erythrithol-4-phosphate pathway for isoprenoid biosynthesis offers new ways to inhibit the growth of Plasmodium spp. Fosmidomycin [(3-(N-hydroxyformamido)propyl)phosphonic acid, 1] and its acetyl homologue FR-900098 [(3-(N-hydroxyacetamido)propyl)phosphonic acid, 2] potently inhibit 1-deoxy-d-xylulose-5-phosphate reductoisomerase (Dxr), a key enzyme in this biosynthetic pathway. Arylpropyl substituents were introduced at the -position of the hydroxamate analogue of 2 to study changes in lipophilicity, as well as electronic and steric properties. The potency of several new compounds on the P.falciparum enzyme approaches that of 1 and 2. Activities against the enzyme and parasite correlate well, supporting the mode of action. Seven X-ray structures show that all of the new arylpropyl substituents displace a key tryptophan residue of the active-site flap, which had made favorable interactions with 1 and 2. Plasticity of the flap allows substituents to be accommodated in many ways; in most cases, the flap is largely disordered. Compounds can be separated into two classes based on whether the substituent on the aromatic ring is at the meta or para position. Generally, meta-substituted compounds are better inhibitors, and in both classes, smaller size is linked to better potency.
机译:阻断2-C-甲基-d-赤藓醇-4-磷酸途径用于类异戊二烯生物合成提供了抑制疟原虫属物种生长的新方法。磷霉素[(3-(N-羟基甲酰胺基)丙基)膦酸,1]及其乙酰基同系物FR-900098 [(3-(N-羟基乙酰胺基丙基)丙基,膦酸,2]有效抑制1-脱氧-d-木酮糖- 5-磷酸还原异构酶(Dxr),此生物合成途径中的关键酶。在异羟肟酸酯类似物2的-位置引入芳丙基取代基,以研究亲脂性以及电子和空间特性的变化。几种新化合物对恶性疟原虫酶的效价接近1和2。针对该酶和寄生虫的活性相关性很好,支持了作用方式。七个X射线结构表明,所有新的芳基丙基取代基都取代了活性位点皮瓣的关键色氨酸残基,该残基与1和2形成了良好的相互作用。皮瓣的可塑性使取代基可以多种方式被容纳。在大多数情况下,皮瓣很大程度上无序。基于芳环上的取代基是在间位还是对位,化合物可以分为两类。通常,间位取代的化合物是更好的抑制剂,并且在两种类型中,较小的尺寸都与较好的效力有关。

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