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首页> 外文期刊>Malaria Journal >Cloning and characterization of bifunctional enzyme farnesyl diphosphate/geranylgeranyl diphosphate synthase from Plasmodium falciparum
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Cloning and characterization of bifunctional enzyme farnesyl diphosphate/geranylgeranyl diphosphate synthase from Plasmodium falciparum

机译:双官能酶法呢基二磷酸/甲苯基甲基二磷酸二磷酸二磷酸二磷酸二磷酸二磷酸合酶的克隆与表征

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摘要

Background Isoprenoids are the most diverse and abundant group of natural products. In Plasmodium falciparum, isoprenoid synthesis proceeds through the methyl erythritol diphosphate pathway and the products are further metabolized by farnesyl diphosphate synthase (FPPS), turning this enzyme into a key branch point of the isoprenoid synthesis. Changes in FPPS activity could alter the flux of isoprenoid compounds downstream of FPPS and, hence, play a central role in the regulation of a number of essential functions in Plasmodium parasites. Methods The isolation and cloning of gene PF3D7_18400 was done by amplification from cDNA from mixed stage parasites of P. falciparum. After sequencing, the fragment was subcloned in pGEX2T for recombinant protein expression. To verify if the PF3D7_1128400 gene encodes a functional rPfFPPS protein, its catalytic activity was assessed using the substrate [4-14C] isopentenyl diphosphate and three different allylic substrates: dimethylallyl diphosphate, geranyl diphosphate or farnesyl diphosphate. The reaction products were identified by thin layer chromatography and reverse phase high-performance liquid chromatography. To confirm the product spectrum formed of rPfFPPS, isoprenic compounds were also identified by mass spectrometry. Apparent kinetic constants KM and Vmax for each substrate were determined by Michaelis–Menten; also, inhibition assays were performed using risedronate. Results The expressed protein of P. falciparum FPPS (rPfFPPS) catalyzes the synthesis of farnesyl diphosphate, as well as geranylgeranyl diphosphate, being therefore a bifunctional FPPS/geranylgeranyl diphosphate synthase (GGPPS) enzyme. The apparent KM values for the substrates dimethylallyl diphosphate, geranyl diphosphate and farnesyl diphosphate were, respectively, 68?±?5 μM, 7.8?±?1.3 μM and 2.06?±?0.4 μM. The protein is expressed constitutively in all intra-erythrocytic stages of P. falciparum, demonstrated by using transgenic parasites with a haemagglutinin-tagged version of FPPS. Also, the present data demonstrate that the recombinant protein is inhibited by risedronate. Conclusions The rPfFPPS is a bifunctional FPPS/GGPPS enzyme and the structure of products FOH and GGOH were confirmed mass spectrometry. Plasmodial FPPS represents a potential target for the rational design of chemotherapeutic agents to treat malaria.
机译:背景类异戊二烯是天然产品最多样化和丰富的组。在恶性疟原虫中,异戊二烯合成通过甲基赤藓糖醇二磷酸途径进行,并通过法呢基二磷酸合酶(FPP)进一步代谢产物,将该酶转化为异戊二烯合成的关键分支点。 FPPS活性的变化可以改变FPP下游等异戊二烯化合物的通量,从而在疟原虫寄生虫中的许多基本功能的调节中起着核心作用。方法通过从p. falciparum的混合阶段寄生虫从CDNA扩增进行基因PF3D7_18400的分离和克隆。测序后,将片段亚克隆到PGEx2T中以进行重组蛋白表达。焦磷酸二甲基,二磷酸香叶酯或法尼基二磷酸:以验证是否PF3D7_1128400基因编码功能性蛋白rPfFPPS,其催化活性用基板[4-14C]二磷酸异戊烯基和三个不同的烯丙基底物进行评估。通过薄层色谱和反相高效液相色谱法鉴定反应产物。为了确认由RPFFPPS形成的产品光谱,还通过质谱法鉴定等异戊二烯化合物。明显的动力学常数Km和每个底物的Vmax由Michaelis-Menten测定;此外,使用利塞膦酸盐进行抑制测定。结果P. falciparum fpps(Rpffpps)的表达蛋白质催化了法呢基二磷酸的合成,以及二烷基二磷酸的甘油基,因此是双官能Fpps / geranylantanyl二磷酸合酶(GGPPS)酶。底物二甲基二磷酸二磷酸,天竺葵二磷酸二磷酸二磷酸二磷酸二磷酸的表观km值分别为68〜±5μm,7.8?±1.3μm和2.06?±0.4μm。该蛋白质在对血清的所有红细胞阶段组成,通过使用转基因寄生虫与血凝素标记版本的FPPS进行证明。此外,本数据表明,重组蛋白是由利塞膦酸盐抑制。结论RPFFPPS是双官能FPPS / GGPPS酶,并证实了质谱法的产品FOH和GGOH的结构。疟原虫FPPS代表了治疗疟疾的化学治疗剂的合理设计的潜在目标。

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