首页> 外文期刊>Molecular and Biochemical Parasitology >Mapping the binding site for gossypol-like inhibitors of Plasmodium falciparum lactate dehydrogenase.
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Mapping the binding site for gossypol-like inhibitors of Plasmodium falciparum lactate dehydrogenase.

机译:映射恶性疟原虫乳酸脱氢酶的棉酚样抑制剂的结合位点。

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摘要

Gossypol is a di-sesquiterpene natural-product in the form of a functionalised binaphthyl and is isolated from cotton plants. The compound has long been known to exhibit anti-malarial and other biological activities. Previous studies have indicated that compounds of this type target Plasmodium falciparum lactate dehydrogenase (pfLDH), an essential enzyme for energy generation within the parasite. In this study, we report that simple naphthalene-based compounds, the core of the gossypol structure, exhibit weak inhibition of the parasite lactate dehydrogenase. Crystal structures of the complexes formed by binding of these naphthalene-based compounds to their target enzyme have been used to delineate the molecular features likely to form the gossypol binding site. Two modes of binding are observed: one overlapping the pyruvate but not the co-factor site, the other bridging the binding sites for the co-factor nicontinamide group and pyruvate substrate. This latter site encompasses molecular features uniqueto Plasmodium forms of LDH and is likely to represent the mode of binding for gossypol derivatives that show selectivity for the parasite enzymes. We also report a substrate analogue that unexpectedly binds within the adenine pocket of the co-factor groove. Although these core pharmacophore-like molecules only exhibit low levels of inhibitory activity, these molecular snapshots provide a rational basis for renewed structure-based development of naphthalene-based compounds as anti-malarial agents.
机译:棉酚是一种双倍半萜烯天然产物,呈功能化联萘形式,并从棉花植物中分离出来。长期以来,该化合物显示出抗疟疾和其他生物活性。先前的研究表明,这类化合物靶向恶性疟原虫乳酸脱氢酶(pfLDH),这是寄生虫体内产生能量的重要酶。在这项研究中,我们报告说,简单的基于萘的化合物(棉酚结构的核心)对寄生虫乳酸脱氢酶的抑制作用较弱。通过将这些基于萘的化合物与它们的靶标酶结合而形成的复合物的晶体结构已被用于描绘可能形成棉酚结合位点的分子特征。观察到两种结合方式:一种与丙酮酸重叠但不与辅因子位点重叠,另一种桥接辅因子烟曲氨酰胺基团和丙酮酸底物的结合位点。后一个位点包含LDH的疟原虫形式所独有的分子特征,并且很可能代表与棉酚衍生物结合的模式,所述棉酚衍生物对寄生虫酶具有选择性。我们还报告了一个底物类似物,它意外地结合在辅助因子凹槽的腺嘌呤口袋内。尽管这些核心药效团样分子仅表现出低水平的抑制活性,但是这些分子快照为重新开发基于萘的基于化合物的化合物作为抗疟剂提供了合理的基础。

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