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Cloning Expression and Characterization of UDP-N-Acetylglucosamine Enolpyruvyl Transferase (MurA) from Wolbachia Endosymbiont of Human Lymphatic Filarial Parasite Brugia malayi

机译:人类淋巴丝虫寄生虫马来亚布鲁氏菌的Wolbachia内胚轴的UDP-N-乙酰氨基葡糖烯醇丙酮酸转移酶(MurA)的克隆表达和表征

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摘要

Wolbachia, an endosymbiont of filarial nematode, is considered a promising target for treatment of lymphatic filariasis. Although functional characterization of the Wolbachia peptidoglycan assembly has not been fully explored, the Wolbachia genome provides evidence for coding all of the genes involved in lipid II biosynthesis, a part of peptidoglycan biosynthesis pathway. UDP-N-acetylglucosamine enolpyruvyl transferase (MurA) is one of the lipid II biosynthesis pathway enzymes and it has inevitably been recognized as an antibiotic target. In view of the vital role of MurA in bacterial viability and survival, MurA ortholog from Wolbachia endosymbiont of Brugia malayi (wBm-MurA) was cloned, expressed and purified for further molecular characterization. The enzyme kinetics and inhibition studies were undertaken using fosfomycin. wBm-MurA was found to be expressed in all the major life stages of B. malayi and was immunolocalized in Wolbachia within the microfilariae and female adults by the confocal microscopy. Sequence analysis suggests that the amino acids crucial for enzymatic activity are conserved. The purified wBm-MurA was shown to possess the EPSP synthase (3-phosphoshikimate 1-carboxyvinyltransferase) like activity at a broad pH range with optimal activity at pH 7.5 and 37°C temperature. The apparent affinity constant (K m) for the substrate UDP-N-acetylglucosamine was found to be 0.03149 mM and for phosphoenolpyruvate 0.009198 mM. The relative enzymatic activity was inhibited ∼2 fold in presence of fosfomycin. Superimposition of the wBm-MurA homology model with the structural model of Haemophilus influenzae (Hi-MurA) suggests binding of fosfomycin at the same active site. The findings suggest wBm-MurA to be a putative antifilarial drug target for screening of novel compounds.
机译:丝状线虫内共生菌Wolbachia被认为是治疗淋巴丝虫病的有希望的靶标。尽管尚未完全探讨沃尔巴克氏菌肽聚糖装配体的功能特征,但沃尔巴克氏菌基因组为编码参与脂质II生物合成(肽聚糖生物合成途径的一部分)的所有基因提供了证据。 UDP-N-乙酰氨基葡糖烯醇式丙酮酸转移酶(MurA)是脂质II生物合成途径的酶之一,不可避免地被认为是抗生素的靶标。鉴于MurA在细菌生存力和存活中的重要作用,克隆,表达和纯化了来自马来西亚布鲁氏菌Wolbachia内共生体的MurA直系同源物,进行了表达和纯化,以用于进一步的分子表征。使用磷霉素进行了酶动力学和抑制研究。发现wBm-MurA在马来芽孢杆菌的所有主要生命阶段均有表达,并通过共聚焦显微镜免疫定位于微丝aria和成年雌性的Wolbachia中。序列分析表明,对于酶活性至关重要的氨基酸是保守的。已显示纯化的wBm-MurA具有在宽pH范围内具有类似活性的EPSP合酶(3-磷酸基甲酸酯1-羧基乙烯基转移酶),在pH 7.5和37°C温度下具有最佳活性。发现底物UDP-N-乙酰基葡糖胺的表观亲和常数(K m)为0.03149mM,而磷酸烯醇丙酮酸为0.00198198mM。在磷霉素存在下,相对酶活性被抑制了约2倍。 wBm-MurA同源性模型与流感嗜血杆菌(Hi-MurA)结构模型的叠加表明,磷霉素在相同的活性位点具有结合力。这些发现表明,wBm-MurA是筛选新型化合物的公认抗丝虫药物靶标。

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