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酶法对化学战剂 VX 的解毒作用:用于硫代磷酸酯水解的磷酰三酯酶的进化。

Enzymatic neutralization of the chemical warfare agent VX: evolution of phosphotriesterase for phosphorothiolate hydrolysis.

机构信息

Department of Chemistry, P.O. Box 30012, Texas A&M University, College Station, Texas 77842, United States.

出版信息

J Am Chem Soc. 2013 Jul 17;135(28):10426-32. doi: 10.1021/ja402832z. Epub 2013 Jul 9.

Abstract

The V-type nerve agents (VX and VR) are among the most toxic substances known. The high toxicity and environmental persistence of VX make the development of novel decontamination methods particularly important. The enzyme phosphotriesterase (PTE) is capable of hydrolyzing VX but with an enzymatic efficiency more than 5 orders of magnitude lower than with its best substrate, paraoxon. PTE has previously proven amenable to directed evolution for the improvement of catalytic activity against selected compounds through the manipulation of active-site residues. Here, a series of sequential two-site mutational libraries encompassing 12 active-site residues of PTE was created. The libraries were screened for catalytic activity against a new VX analogue, DEVX, which contains the same thiolate leaving group of VX coupled to a diethoxyphosphate core rather than the ethoxymethylphosphonate core of VX. The evolved catalytic activity with DEVX was enhanced 26-fold relative to wild-type PTE. Further improvements were facilitated by targeted error-prone PCR mutagenesis of loop-7, and additional PTE variants were identified with up to a 78-fold increase in the rate of DEVX hydrolysis. The best mutant hydrolyzed the racemic nerve agent VX with a value of kcat/Km = 7 × 10(4) M(-1) s(-1), a 230-fold improvement relative to wild-type PTE. The highest turnover number achieved by the mutants created for this investigation was 137 s(-1), an enhancement of 152-fold relative to wild-type PTE. The stereoselectivity for the hydrolysis of the two enantiomers of VX was relatively low. These engineered mutants of PTE are the best catalysts ever reported for the hydrolysis of nerve agent VX.

摘要

V 型神经毒剂(VX 和 VR)是已知毒性最强的物质之一。VX 的高毒性和环境持久性使得开发新型解毒方法尤为重要。磷酸三酯酶(PTE)能够水解 VX,但酶解效率比其最佳底物对氧磷要低 5 个数量级以上。PTE 以前已经被证明可以通过对活性位点残基的操作进行定向进化,以提高对选定化合物的催化活性。在这里,创建了一系列包含 PTE 的 12 个活性位点残基的连续双位点突变文库。这些文库针对新的 VX 类似物 DEVX 进行了筛选,该类似物含有与 VX 相同的硫代离去基团,与 VX 的乙氧甲基膦酸酯核心相连,而不是与 VX 的二乙氧基膦酸酯核心相连。与野生型 PTE 相比,进化后的 DEVX 催化活性提高了 26 倍。通过靶向易错 PCR 诱变进一步改善了环 7,确定了另外的 PTE 变体,其 DEVX 水解速率提高了高达 78 倍。最好的突变体以 kcat/Km = 7×10(4) M(-1) s(-1)的速率水解外消旋神经毒剂 VX,与野生型 PTE 相比提高了 230 倍。本研究中创建的突变体的最高周转数为 137 s(-1),比野生型 PTE 提高了 152 倍。对 VX 的两种对映异构体水解的立体选择性相对较低。这些经过工程改造的 PTE 突变体是迄今为止报道的用于水解神经毒剂 VX 的最好的催化剂。

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