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Selective Detoxification of Phenols by Pichia pastoris and Arabidopsis thaliana Heterologously Expressing the PtUGT72B1 from Populus trichocarpa

机译:巴斯德毕赤酵母和拟南芥异源表达毛果杨PtUGT72B1对苯酚的选择性解毒

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摘要

Phenols are present in the environment and commonly in contact with humans and animals because of their wide applications in many industries. In a previous study, we reported that uridine diphosphate-glucose-dependent glucosyltransferase PtUGT72B1 from Populus trichocarpa has high activity in detoxifying trichlorophenol by conjugating glucose. In this study, more experiments were performed to determine the substrate specificity of PtUGT72B1 towards phenolic compounds. Among seven phenols tested, three were glucosylated by PtUGT72B1 including phenol, hydroquinone, and catechol. Transgenic Arabidopsis plants expressing the enzyme PtUGT72B1 showed higher resistance to hydroquinone and catechol but more sensitivity to phenol than wild type plants. Transgenic Pichia pastoris expressing PtUGT72B1 showed enhanced resistance to all three phenols. Compared with wild type Arabidopsis plants, transgenic Arabidopsis plants showed higher removal efficiencies and exported more glucosides of phenol, phenyl β-D-glucopyranoside, to the medium after cultured with the three phenols. Protein extracts from transgenic Arabidopsis plants showed enhanced conjugating activity towards phenol, hydroquinone and catechol. PtUGT72B1 showed much higher expression level in Pichia pastoris than in Arabidopsis plants. Kinetic analysis of the PtUGT72B1 was also performed.
机译:苯酚存在于环境中,并且由于其在许多行业中的广泛应用而通常与人和动物接触。在先前的研究中,我们报道了来自毛果杨的尿苷二磷酸-葡萄糖依赖性葡萄糖基转移酶PtUGT72B1具有高活性,可通过结合葡萄糖来解毒三氯酚。在这项研究中,进行了更多的实验以确定PtUGT72B1对酚类化合物的底物特异性。在测试的七种酚中,三种被PtUGT72B1糖基化,包括酚,对苯二酚和邻苯二酚。表达PtUGT72B1酶的转基因拟南芥植株比野生型植株对氢醌和儿茶酚的抗药性更高,但对苯酚的敏感性更高。表达PtUGT72B1的转基因巴斯德毕赤酵母显示出对所有三种酚的增强抗性。与野生型拟南芥植物相比,转基因拟南芥植物显示出更高的去除效率,并且在与三种酚一起培养后向培养基中输出了更多的苯酚酚苷,苯基β-D-吡喃葡萄糖苷。来自转基因拟南芥植物的蛋白质提取物表现出增强的对苯酚,对苯二酚和儿茶酚的结合活性。 PtUGT72B1在毕赤酵母中的表达水平比拟南芥植物高得多。还进行了PtUGT72B1的动力学分析。

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