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神经毒气降解酶有机磷酰基水解酶/脯氨酸内肽酶双重活性的结构见解。

Structural insights into the dual activities of the nerve agent degrading organophosphate anhydrolase/prolidase.

机构信息

Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Biochemistry. 2010 Jan 26;49(3):547-59. doi: 10.1021/bi9011989.

Abstract

The organophosphate acid anhydrolase (OPAA) is a member of a class of bimetalloenzymes that hydrolyze a variety of toxic acetylcholinesterase-inhibiting organophosphorus compounds, including fluorine-containing chemical nerve agents. It also belongs to a family of prolidases, with significant activity against various Xaa-Pro dipeptides. Here we report the X-ray structure determination of the native OPAA (58 kDa mass) from Alteromonas sp. strain JD6.5 and its cocrystal with the inhibitor mipafox [N,N'-diisopropyldiamidofluorophosphate (DDFP)], a close analogue of the nerve agent organophosphate substrate diisopropyl fluorophosphate (DFP). The OPAA structure is composed of two domains, amino and carboxy domains, with the latter exhibiting a "pita bread" architecture and harboring the active site with the binuclear Mn(2+) ions. The native OPAA structure revealed unexpectedly the presence of a well-defined nonproteinaceous density in the active site whose identity could not be definitively established but is suggestive of a bound glycolate, which is isosteric with a glycine (Xaa) product. All three glycolate oxygens coordinate the two Mn(2+) atoms. DDFP or more likely its hydrolysis product, N,N'-diisopropyldiamidophosphate (DDP), is present in the cocrystal structure and bound by coordinating the binuclear metals and forming hydrogen bonds and nonpolar interactions with active site residues. An unusual common feature of the binding of the two ligands is the involvement of only one oxygen atom of the glycolate carboxylate and the product DDP tetrahedral phosphate in bridging the two Mn(2+) ions. Both structures provide new understanding of ligand recognition and the prolidase and organophosphorus hydrolase catalytic activities of OPAA.

摘要

有机磷酸酐酶(OPAA)是一类双金属酶的成员,能够水解多种有毒的乙酰胆碱酯酶抑制剂有机磷化合物,包括含氟化学神经毒剂。它还属于脯氨酰肽酶家族,对各种 Xaa-Pro 二肽具有显著的活性。在这里,我们报告了来自 Alteromonas sp. strain JD6.5 的天然 OPAA(分子量 58 kDa)及其与抑制剂 mipafox [N,N'-二异丙基二酰胺氟膦酸酯(DDFP)]的共晶体的 X 射线结构测定,DDFP 是神经毒剂有机磷底物二异丙基氟膦酸酯(DFP)的紧密类似物。OPAA 结构由两个结构域,氨基结构域和羧基结构域组成,后者表现出“披萨饼”结构,并含有具有双核 Mn(2+) 离子的活性位点。天然 OPAA 结构出人意料地揭示了活性位点中存在一个定义明确的非蛋白密度,其身份无法明确确定,但提示存在结合的甘醇酸,与甘氨酸(Xaa)产物等排。三个甘醇酸氧原子都与两个 Mn(2+) 原子配位。在共晶结构中存在 DDFP 或更可能其水解产物 N,N'-二异丙基二酰胺膦酸酯(DDP),并通过配位双核金属和与活性位点残基形成氢键和非极性相互作用而结合。两种配体结合的一个不寻常的共同特征是只有甘醇酸羧酸盐的一个氧原子和产物 DDP 四面体磷酸盐参与桥接两个 Mn(2+) 离子。这两个结构为 OPAA 的配体识别和脯氨酰肽酶和有机磷水解酶催化活性提供了新的认识。

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