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首页> 外文期刊>Biochemistry >Interrogation of the Substrate Profile and Catalytic Properties of the Phosphotriesterase from Sphingobium sp Strain TCM1: An Enzyme Capable of Hydrolyzing Organophosphate Flame Retardants and Plasticizers
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Interrogation of the Substrate Profile and Catalytic Properties of the Phosphotriesterase from Sphingobium sp Strain TCM1: An Enzyme Capable of Hydrolyzing Organophosphate Flame Retardants and Plasticizers

机译:鞘氨醇单胞菌菌株TCM1的磷酸三酯酶的底物概况和催化性能的询问:一种能够水解有机磷酸酯阻燃剂和增塑剂的酶

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摘要

The most familiar organophosphorus compounds are the neurotoxic insecticides and nerve agents. A related group of organophosphorus compounds, the phosphotriester plasticizers and flame retardants, has recently become widely used. Unlike the neurotoxic phosphotriesters, the plasticizers and flame retardants lack an easily hydrolyzable bond. While the hydrolysis of the neurotoxic organophosphates by phosphotriesterase enzymes is well-known, the lack of a labile bond in the flame retardants and plasticizers renders them inert to typical phosphotriesterases. A phosphotriesterase from Sphingobium sp. strain TCM1 (Sb-PTE) has recently been reported to catalyze the hydrolysis of organophosphorus flame retardants. This enzyme has now been expressed in Escherichia coli, and the activity with a wide variety of organophosphorus substrates has been characterized and compared to the activity of the well-known phosphotriesterase from Pseudomonas diminuta (Pd-PTE). Structure prediction suggests that Sb-PTE has a beta-propeller fold, and homology modeling has identified a potential mononuclear manganese binding site. Sb-PTE exhibits catalytic activity against typical phosphotriesterase substrates such as paraoxon, but unlike Pd-PTE, Sb-PTE is also able to effectively hydrolyze flame retardants, plasticizers, and industrial solvents. Sb-PTE can hydrolyze both phosphorus oxygen bonds and phosphorus sulfur bonds, but not phosphorus nitrogen bonds. The best substrate for Sb-PTE is the flame retardant triphenyl phosphate with a k(cat)/K-m of 1.7 x 10(6) M-1 s(-1). Quite remarkably, Sb-PTE is also able to hydrolyze phosphotriesters with simple alcohol leaving groups such as tributyl phosphate (k(cat)/K-m = 40 M-1 s(-1)), suggesting that this enzyme could be useful for the bioremediation of a wide variety of organophosphorus compounds.
机译:最常见的有机磷化合物是神经毒性的杀虫剂和神经毒剂。一组相关的有机磷化合物,磷酸三酯增塑剂和阻燃剂,最近已被广泛使用。与具有神经毒性的磷酸三酯不同,增塑剂和阻燃剂缺乏易于水解的键。虽然神经毒性有机磷酸酯被磷酸三酯酶水解的方法是众所周知的,但是阻燃剂和增塑剂缺乏不稳定的键使它们对典型的磷酸三酯酶呈惰性。来自鞘氨醇单胞菌属的磷酸三酯酶。最近有报道称菌株TCM1(Sb-PTE)催化有机磷阻燃剂的水解。该酶现在已在大肠杆菌中表达,并且已表征了与多种有机磷底物的活性,并将其与众所周知的假单胞菌假单胞菌磷酸三酯酶(Pd-PTE)的活性进行了比较。结构预测表明,Sb-PTE具有β螺旋桨折叠,并且同源性建模已经确定了潜在的单核锰结合位点。 Sb-PTE对典型的磷酸三酯酶底物(如对氧磷)表现出催化活性,但与Pd-PTE不同,Sb-PTE还能够有效地水解阻燃剂,增塑剂和工业溶剂。 Sb-PTE可以水解磷氧键和磷硫键,但不能水解磷氮键。 Sb-PTE的最佳基质是阻燃性磷酸三苯酯,其k(cat)/ K-m为1.7 x 10(6)M-1 s(-1)。非常值得注意的是,Sb-PTE还能够用简单的醇离去基团(如磷酸三丁酯)水解磷酸三酯(k(cat)/ Km = 40 M-1 s(-1)),表明该酶可用于生物修复。各种各样的有机磷化合物。

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