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Altering the substrate specificity of methyl parathion hydrolase with directed evolution

机译:定向进化改变甲基对硫磷水解酶的底物特异性

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Many organophosphates (OPs) are used as pesticides in agriculture. They pose a severe health hazard due to their inhibitory effect on acetylcholinesterase. Therefore, detoxification of water and soil contaminated by OPs is important. Metalloenzymes such as methyl parathion hydrolase (MPH) from Pseudomonas sp. WBC-3 hold great promise as bioremediators as they are able to hydrolyze a wide range of OPs. MPH is highly efficient towards methyl parathion (1 x 10(6) s(-1) M-1), but its activity towards other OPs is more modest. Thus, site saturation mutagenesis (SSM) and DNA shuffling were performed to find mutants with improved activities on ethyl paraxon (6.1 x 10(3) s(-1) M-1). SSM was performed on nine residues lining the active site. Several mutants with modest activity enhancement towards ethyl paraoxon were isolated and used as templates for DNA shuffling. Ultimately, 14 multiple-site mutants with enhanced activity were isolated. One mutant, R2F3, exhibited a nearly 100-fold increase in the k(cat)/K-m value for ethyl paraoxon (5.9 x 10(5) s(-1) M-1). These studies highlight the 'plasticity' of the MPH active site that facilitates the finetuning of its active site towards specific substrates with only minor changes required. MPH is thus an ideal candidate for the development of an enzyme-based bioremediation system. (C) 2015 Elsevier Inc. All rights reserved.
机译:许多有机磷酸盐(OPs)在农业中用作农药。由于它们对乙酰胆碱酯酶的抑制作用,因此对健康构成严重危害。因此,对被OPs污染的水和土壤进行排毒很重要。金属酶,例如来自假单胞菌(Pseudomonas sp。)的甲基对硫磷水解酶(MPH)。 WBC-3作为生物修复剂具有广阔的前景,因为它们能够水解多种OP。 MPH对甲基对硫磷(1 x 10(6)s(-1)M-1)有很高的效率,但对其他OP的活性却较低。因此,进行了位点饱和诱变(SSM)和DNA改组,以发现对乙基对氧磷(6.1 x 10(3)s(-1)M-1)具有改善的活性的突变体。对活性位点内衬的九个残基进行了SSM。分离了一些对乙基对氧磷具有适度增强活性的突变体,并将其用作DNA改组的模板。最终,分离出具有增强活性的14个多位点突变体。一个突变体R2F3表现出乙基对氧磷的k(cat)/ K-m值增加了近100倍(5.9 x 10(5)s(-1)M-1)。这些研究突出了MPH活性位点的“可塑性”,从而仅需很小的变化即可促进其活性位点向特定底物的微调。因此,MPH是开发基于酶的生物修复系统的理想选择。 (C)2015 Elsevier Inc.保留所有权利。

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