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Cloning and expression of a gene encoding a bacterial enzyme for decontamination of organophosphorus nerve agents and nucleotide sequence of the enzyme.

机译:细菌细菌基因的克隆和表达以净化有机磷神经毒剂和该酶的核苷酸序列。

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摘要

Organophosphorus acid (OPA) anhydrolase enzymes have been found in a wide variety of prokaryotic and eukaryotic organisms. Interest in these enzymes has been prompted by their ability to catalyze the hydrolysis of toxic organophosphorus cholinesterase-inhibiting compounds, including pesticides and chemical nerve agents. The natural substrates for these enzymes are unknown. The gene (opaA) which encodes an OPA anhydrolase (OPAA-2) was isolated from an Alteromonas sp. strain JD6.5 EcoRI-lambda ZAPII chromosomal library expressed in Escherichia coli and identified by immunodetection with anti-OPAA-2 serum. OPA anhydrolase activity expressed by the immunopositive recombinant clones was demonstrated by using diisopropylfluorophosphate (DFP) as a substrate. A comparison of the recombinant enzyme with native, purified OPAA-2 showed they had the same apparent molecular mass (60 kDa), antigenic properties, and enzyme activity against DFP and the chemical nerve agents sarin, soman, and O-cyclohexyl methylphosphonofluoridate. The gene expressing this activity was found in a 1.74-kb PstI-HindIII fragment of the original 6.1-kb EcoRI DNA insert. The nucleotide sequence of this PstI-HindIII fragment revealed an open reading frame of 1,551 nucleotides, coding for a protein of 517 amino acid residues. Amino acid sequence comparison of OPAA-2 with the protein database showed that OPAA-2 is similar to a 647-amino-acid sequence produced by an open reading frame which appears to be the E. coli pepQ gene. Further comparison of OPAA-2, the E. coli PepQ protein sequence, E. coli aminopeptidase P, and human prolidase showed regions of different degrees of similarity or functionally conserved amino acid substitutions. These findings, along with preliminary data confirming the presence of prolidase activity expressed by OPAA-2, suggest that the OPAA-2 enzyme may, in nature, be used in peptide metabolism.
机译:在各种各样的原核和真核生物中都发现了有机磷酸(OPA)水解酶。这些酶具有催化毒性有机磷胆碱酯酶抑制化合物(包括农药和化学神经制剂)水解的能力,引起了人们对这些酶的兴趣。这些酶的天然底物是未知的。从Alteromonas sp。分离到编码OPA水解酶(OPAA-2)的基因(opaA)。菌株JD6.5EcoRI-λZAPII染色体文库在大肠杆菌中表达,并通过抗OPAA-2血清进行免疫检测来鉴定。免疫阳性重组克隆表达的OPA水解酶活性通过使用二异丙基氟磷酸盐(DFP)作为底物来证明。重组酶与天然,纯化的OPAA-2的比较显示,它们具有相同的表观分子量(60 kDa),抗原性,针对DFP和化学神经毒剂沙林,梭曼和O-环己基甲基氟代磷酸酯的酶活性。在最初的6.1-kb EcoRI DNA插入片段的1.74-kb PstI-HindIII片段中发现了表达这种活性的基因。该PstI-HindIII片段的核苷酸序列显示了一个1,551个核苷酸的开放阅读框,编码517个氨基酸残基的蛋白质。 OPAA-2的氨基酸序列与蛋白质数据库的比较表明,OPAA-2类似于由开放阅读框产生的647个氨基酸序列,该阅读框似乎是大肠杆菌pepQ基因。进一步比较OPAA-2,大肠杆菌PepQ蛋白序列,大肠杆菌氨肽酶P和人脯蛋白酶显示出相似程度或功能上保守的氨基酸取代程度不同的区域。这些发现以及证实由OPAA-2表达的脯氨酸酶活性的初步数据表明,OPAA-2酶本质上可用于肽代谢。

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