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首页> 外文期刊>Molecular pharmacology. >O-acetylsalicylhydroxamic acid, a novel acetylating inhibitor of prostaglandin H2 synthase: structural and functional characterization of enzyme-inhibitor interactions.
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O-acetylsalicylhydroxamic acid, a novel acetylating inhibitor of prostaglandin H2 synthase: structural and functional characterization of enzyme-inhibitor interactions.

机译:O-乙酰水杨基异羟肟酸,一种新型前列腺素H2合酶的乙酰化抑制剂:酶-抑制剂相互作用的结构和功能表征。

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摘要

Aspirin is unique among clinically used nonsteroidal antiinflammatory drugs in that it irreversibly inactivates prostaglandin (PG) H2 synthase (PGHS) via acetylation of an active-site serine residue. We report the synthesis and characterization of a novel acetylating agent, O-acetylsalicylhydroxamic acid (AcSHA), which inhibits PGE2 synthesis in vivo and blocks the cyclooxygenase activity of PGHS in vitro. AcSHA requires the presence of the active-site residue Ser-529 to be active against human PGHS-1; the S529A mutant is resistant to inactivation by the inhibitor. Analysis of PGHS inactivation by AcSHA, coupled with the X-ray crystal structure of the complex of ovine PGHS-1 with AcSHA, confirms that the inhibitor elicits its effects via acetylation of Ser-529 in the cyclooxygenase active site. The crystal structure reveals an intact inhibitor molecule bound in the enzyme's cyclooxygenase active-site channel, hydrogen bonding with Arg-119 of the enzyme. The structure-activity profile of AcSHA can be rationalized in terms of the crystal structure of the enzyme-ligand complex. AcSHA may prove useful as a lead compound to facilitate the development of new acetylating inhibitors.
机译:阿司匹林在临床使用的非甾体类抗炎药中是独特的,因为它通过活性位点丝氨酸残基的乙酰化不可逆地灭活前列腺素(PG)H2合酶(PGHS)。我们报告了合成和表征的新型乙酰化剂,O-乙酰水杨酸异羟肟酸(AcSHA),抑制体内PGE2合成并在体外阻断PGHS的环氧合酶活性。 AcSHA要求存在活性位点残基Ser-529对人PGHS-1具有活性。 S529A突变体可抵抗该抑制剂的失活。 AcSHA对PGHS灭活的分析,再加上绵羊PGHS-1与AcSHA的复合物的X射线晶体结构,证实了该抑制剂通过在环加氧酶活性位点对Ser-529进行乙酰化来引发其作用。晶体结构揭示了一个完整的抑制剂分子结合在酶的环氧合酶活性位点通道中,与酶的Arg-119形成氢键。可以根据酶-配体复合物的晶体结构合理化AcSHA的结构-活性曲线。 AcSHA可能被证明是有助于促进新型乙酰化抑制剂开发的先导化合物。

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