化学
氟磷酸二异丙酯
活动站点
水解酶
立体化学
神经毒剂
共晶
羧酸盐
有机磷
氢键
氧阴离子孔
二肽酶
水解
组合化学
乙酰胆碱酯酶
结晶学
生物化学
分子
酶
有机化学
农学
杀虫剂
生物
作者
Nand K. Vyas,Alexei Nickitenko,Vipin K. Rastogi,Saumil S. Shah,Florante A. Quiocho
出处
期刊:Biochemistry
[American Chemical Society]
日期:2009-12-14
卷期号:49 (3): 547-559
被引量:91
摘要
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 Mn2+ 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 Mn2+ 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 Mn2+ ions. Both structures provide new understanding of ligand recognition and the prolidase and organophosphorus hydrolase catalytic activities of OPAA.
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