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含锌磷酸三酯酶与结合底物类似物4-甲基苄基膦酸二乙酯的三维结构。

Three-dimensional structure of the zinc-containing phosphotriesterase with the bound substrate analog diethyl 4-methylbenzylphosphonate.

作者信息

Vanhooke J L, Benning M M, Raushel F M, Holden H M

机构信息

Department of Biochemistry, University of Wisconsin, Madison 53705, USA.

出版信息

Biochemistry. 1996 May 14;35(19):6020-5. doi: 10.1021/bi960325l.

Abstract

Phosphotriesterase from Pseudomonas diminuta catalyzes the hydrolysis of paraoxon and related acetylcholinesterase inhibitors with rate enhancements that approach 10(12). The enzyme requires a binuclear metal center for activity and as isolated contains 2 equiv of zinc per subunit. Here we describe the three-dimensional structure of the Zn2+/Zn2+-substituted enzyme complexed with the substrate analog diethyl 4-methylbenzylphosphonate. Crystals employed in the investigation belonged to the space group C2 with unit cell dimensions of a = 129.6 A, b = 91.4 A, c = 69.4 A, beta = 91.9 degrees, and two subunits in the asymmetric unit. The model was refined by least-squares analysis to a nominal resolution of 2.1 A and a crystallographic R-factor of 15.4% for all measured X-ray data. As in the previously reported structure of the cadmium-containing enzyme, the bridging ligands are a carbamylated lysine residue (Lys 169) and a hydroxide. The zinc ions are separated by 3.3 A. The more buried zinc ion is surrounded by His 55, His 57, Lys 169, Asp 301, and the bridging hydroxide in a trigonal bipyramidal arrangement as described for the cadmium-substituted enzyme. Unlike the octahedral coordination observed for the more solvent-exposed cadmium ion, however, the second zinc is tetrahedrally ligated to Lys 169, His 201, His 230, and the bridging hydroxide. The diethyl 4-methylbenzylphosphonate occupies a site near the binuclear metal center with the phosphoryl oxygen of the substrate analog situated at 3.5 A from the more solvent-exposed zinc ion. The aromatic portion of the inhibitor binds in a fairly hydrophobic pocket. A striking feature of the active site pocket is the lack of direct electrostatic interactions between the inhibitor and the protein. This most likely explains the broad substrate specificity exhibited by phosphotriesterase. The position of the inhibitor within the active site suggests that the nucleophile for the hydrolysis reaction is the metal-bound hydroxide.

摘要

来自微小假单胞菌的磷酸三酯酶催化对氧磷及相关乙酰胆碱酯酶抑制剂的水解反应,其速率增强倍数接近10的12次方。该酶的活性需要一个双核金属中心,并且分离得到的酶每个亚基含有2当量的锌。在此,我们描述了与底物类似物4-甲基苄基膦酸二乙酯复合的Zn2+/Zn2+取代酶的三维结构。用于研究的晶体属于空间群C2,晶胞参数为a = 129.6 Å,b = 91.4 Å,c = 69.4 Å,β = 91.9°,不对称单位中有两个亚基。通过最小二乘法分析将模型精修至名义分辨率为2.1 Å,对于所有测量的X射线数据,晶体学R因子为15.4%。与先前报道的含镉酶结构一样,桥连配体是一个氨甲酰化赖氨酸残基(Lys 169)和一个氢氧根。锌离子相距3.3 Å。埋得较深的锌离子被His 55、His 57、Lys 169、Asp 301以及桥连氢氧根以三角双锥排列方式包围,这与镉取代酶的情况类似。然而,与暴露于溶剂中的镉离子所观察到的八面体配位不同,第二个锌以四面体方式与Lys 169、His 201、His 230以及桥连氢氧根配位。4-甲基苄基膦酸二乙酯占据双核金属中心附近的一个位点,底物类似物的磷酰氧距离暴露于溶剂中的锌离子3.5 Å。抑制剂的芳香部分结合在一个相当疏水的口袋中。活性位点口袋的一个显著特征是抑制剂与蛋白质之间缺乏直接的静电相互作用。这很可能解释了磷酸三酯酶所表现出的广泛底物特异性。抑制剂在活性位点内的位置表明水解反应的亲核试剂是与金属结合的氢氧根。

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