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Visualization of a covalent intermediate between microsomal epoxide hydrolase, but not cholesterol epoxide hydrolase, and their substrates

机译:可视化微粒体环氧化物水解酶而非胆固醇环氧化物水解酶与其底物之间的共价中间体

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摘要

Mammalian soluble and microsomal epoxide hydrolases have been proposed to belong to the family of alpha/beta-hydrolase-fold enzymes. These enzymes hydrolyse their substrates by a catalytic triad, with the first step of the enzymatic reaction being the formation of a covalent enzyme-substrate ester. In the present paper, we describe the direct visualization of the ester formation between rat microsomal epoxide hydrolase and its substrate. Microsomal epoxide hydrolase was precipitated with acetone after brief incubation with [1-(14)C]epoxystearic acid. After denaturing SDS gel electrophoresis the protein-bound radioactivity was detected by fluorography. Pure epoxide hydrolase and crude microsomes showed a single radioactive signal of the expected molecular mass that could be suppressed by inclusion of the competitive inhibitor 1,1,1-trichloropropene oxide in the incubation mixture. In a similar manner, 4-fluorochalcone-oxide-sensitive binding of epoxystearic acid to rat soluble epoxide hydrolase could be demonstrated in rat liver cytosol. Under similar conditions, no covalent binding of [26-(14)C]cholesterol-5alpha,6alpha-epoxide to microsomal proteins or solubilized fractions tenfold enriched in cholesterol epoxide hydrolase activity could be observed. Our data provide definitive proof for the formation of an enzyme-substrate-ester intermediate formed in the course of epoxide hydrolysis by microsomal epoxide hydrolase, show no formation of a covalent intermediate between cholesterol epoxide hydrolase and its substrate under the same conditions as those under which an intermediate was shown for both microsomal and soluble epoxide hydrolases and therefore indicate that the cholesterol epoxide hydrolase apparently does not act by a similar mechanism and is probably not structurally related to microsomal and soluble epoxide hydrolases.
机译:哺乳动物可溶性和微粒体环氧化物水解酶已被提议属于α/β水解酶折叠酶家族。这些酶通过催化三联体水解其底物,酶促反应的第一步是形成共价酶-底物酯。在本文中,我们描述了大鼠微粒体环氧化物水解酶与其底物之间酯形成的直接可视化。与[1-(14)C]环氧硬脂酸短暂孵育后,用丙酮沉淀微粒体环氧水解酶。变性SDS凝胶电泳后,通过荧光照相法检测结合蛋白的放射性。纯环氧化物水解酶和粗微粒体显示预期分子量的单个放射性信号,可通过在培养混合物中加入竞争性抑制剂1,1,1-三氯氧化丙烯来抑制该信号。以类似的方式,可以在大鼠肝细胞溶胶中证明环氧硬脂酸对大鼠可溶性环氧化物水解酶的4-氟查尔酮氧化物敏感结合。在相似的条件下,未观察到[26-(14)C]胆固醇-5α,6α-环氧化物与微粒体蛋白或十倍富集胆固醇环氧化物水解酶活性的可溶级分的共价结合。我们的数据为微粒体环氧水解酶在环氧水解过程中形成的酶-底物-酯中间体的形成提供了确凿的证据,表明胆固醇环氧化物水解酶与其底物在相同条件下没有形成共价中间体。对于微粒体和可溶性环氧化物水解酶均显示出中间体,因此表明胆固醇环氧化物水解酶显然不以相似的机理起作用,并且可能与微粒体和可溶性环氧化物水解酶在结构上不相关。

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