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Cooperativity and Pseudo-cooperativity in the Glutathione S-Transferase from Plasmodium falciparum

机译:恶性疟原虫谷胱甘肽S-转移酶中的协同性和拟协同性

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摘要

Binding and catalytic properties of glutathione S-transferase from Plasmodium falciparum (PfGST) have been studied by means of fluorescence, steady state and pre-steady state kinetic experiments, and docking simulations. This enzyme displays a peculiar reversible low-high affinity transition, never observed in other GSTs, which involves the G-site and shifts the apparent KD for glutathione (GSH) from 200 to 0.18 mM. The transition toward the high affinity conformation is triggered by the simultaneous binding of two GSH molecules to the dimeric enzyme, and it is manifested as an uncorrected homotropic behavior, termed “pseudo-cooperativity.” The high affinity enzyme is able to activate GSH, lowering its pKa value from 9.0 to 7.0, a behavior similar to that found in all known GSTs. Using 7-chloro- 4-nitrobenzo-2-oxa-1,3-diazole, this enzyme reveals a potential optimized mechanism for the GSH conjugation but a low catalytic efficiency mainly due to a very low affinity for this co-substrate. Conversely, PfGST efficiently binds one molecule of hemin/monomer. The binding is highly cooperative (nH _ 1.8) and occurs only when GSH is bound to the enzyme. The thiolate of GSH plays a crucial role in the intersubunit communication because no cooperativity is observed when S-methylglutathione replaces GSH. Docking simulations suggest that hemin binds to a pocket leaning into both the G-site and the H-site. The iron is coordinated by the amidic nitrogen of Asn-115, and the two carboxylate groups are in electrostatic interaction with the _-amino group of Lys-15. Kinetic and structural data suggest that PfGST evolved by optimizing its binding property with the parasitotoxic hemin rather than its catalytic efficiency toward toxic electrophilic compounds.
机译:通过荧光,稳态和稳态前动力学实验以及对接模拟研究了恶性疟原虫(PfGST)中谷胱甘肽S-转移酶的结合和催化性能。该酶显示出独特的可逆的低-高亲和力转变,这是在其他GST中从未观察到的,它涉及G位点并将谷胱甘肽(GSH)的表观KD从200改变为0.18 mM。两个GSH分子同时与二聚酶结合会触发向高亲和力构象的转变,这表现为未经校正的同质行为,称为“伪合作性”。高亲和力酶能够激活GSH,将其pKa值从9.0降低到7.0,其行为与所有已知GST相似。使用7-氯-4-硝基苯并-2-恶唑-1,3-二唑,该酶显示了GSH偶联的潜在优化机制,但催化效率低,这主要是由于对该共底物的亲和力极低。相反,PfGST有效结合一分子的血红素/单体。结合是高度合作的(nH _ 1.8),仅在GSH与酶结合时才发生。 GSH的硫醇盐在亚基间的通讯中起着至关重要的作用,因为当S-甲基谷胱甘肽取代GSH时没有观察到协同作用。对接模拟表明,血红素结合到一个倾斜于G位和H位的口袋上。铁由Asn-115的酰胺氮配位,并且两个羧基与Lys-15的α-氨基发生静电相互作用。动力学和结构数据表明,PfGST是通过优化其与寄生毒血红素的结合特性而不是其对有毒亲电化合物的催化效率而进化而来的。

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