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首页> 外文期刊>Biochemistry >Structure of human epoxide hydrolase reveals mechanistic inferences on bifunctional catalysis in epoxide and phosphate ester hydrolysis.
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Structure of human epoxide hydrolase reveals mechanistic inferences on bifunctional catalysis in epoxide and phosphate ester hydrolysis.

机译:人环氧化物水解酶的结构揭示了在环氧化物和磷酸酯水解中双功能催化的机理推断。

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摘要

The X-ray crystal structure of human soluble epoxide hydrolase (sEH) has been determined at 2.6 A resolution, revealing a domain-swapped quaternary structure identical to that observed for the murine enzyme [Argiriadi, M. A., Morisseau, C., Hammock, B. D., and Christianson, D. W. (1999) Proc. Natl. Acad. Sci. U.S.A. 96, 10637-10642]. As with the murine enzyme, the epoxide hydrolytic mechanism of the human enzyme proceeds through an alkyl-enzyme intermediate with Asp-333 in the C-terminal domain. The structure of the human sEH complex with N-cyclohexyl-N'-(iodophenyl)urea (CIU) has been determined at 2.35 A resolution. Tyr-381 and Tyr-465 donate hydrogen bonds to the alkylurea carbonyl group of CIU, consistent with the proposed roles of these residues as proton donors in the first step of catalysis. The N-terminal domain of mammalian sEH contains a 15 A deep cleft, but its biological function is unclear. Recent experiments demonstrate that the N-terminal domain of human sEH catalyzes the metal-dependenthydrolysis of phosphate esters [Cronin, A., Mowbray, S., Durk, H., Homburg, S., Fleming, I., Fisslthaler, B., Oesch, F., and Arand, M. (2003) Proc. Natl. Acad. Sci. U.S.A. 100, 1552-1557; Newman, J. W., Morisseau, C., Harris, T. R., and Hammock, B. D. (2003) Proc. Natl. Acad. Sci. U.S.A. 100, 1558-1563]. The binding of Mg(2+)-HPO4(2-) to the N-terminal domain of human sEH in its CIU complex reveals structural features relevant to those of the enzyme-substrate complex in the phosphatase reaction.
机译:人类可溶性环氧水解酶(sEH)的X射线晶体结构已确定为2.6 A分辨率,揭示了与鼠类酶[Argiriadi,MA,Morisseau,C.,Hammock,BD]观察到的结构域交换的四级结构。 ,and Christianson,DW(1999)Proc。 Natl。学院科学U.S.A. 96,10637-10642]。与鼠类酶一样,人类酶的环氧水解机理是通过在C端结构域中具有Asp-333的烷基酶中间体进行的。具有N-环己基-N'-(碘苯基)脲(CIU)的人sEH复合物的结构已在2.35 A分辨率下确定。 Tyr-381和Tyr-465在CIU的烷基脲羰基上提供氢键,这与这些残基在催化第一步中作为质子供体的拟议作用一致。哺乳动物sEH的N末端结构域包含15 A的深裂,但其生物学功能尚不清楚。最近的实验表明,人sEH的N末端结构域催化磷酸酯的金属依赖性水解[Cronin,A.,Mowbray,S.,Durk,H.,Homburg,S.,Fleming,I.,Fisslthaler,B. ,Oesch,F.和Arand,M.(2003)Proc。 Natl。学院科学美国100:1552-1557; Newman,J.W.,Morisseau,C.,Harris,T.R.和Hammock,B.D.(2003)Proc。 Natl。学院科学美国法典第100号,1558-1563]。 Mg(2 +)-HPO4(2-)与人sEH的CIU复合物中N末端结构域的结合揭示了与磷酸酶反应中的酶-底物复合物相关的结构特征。

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