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戊酰水杨酸对前列腺素内过氧化物合酶-1(环氧化酶-1)的选择性抑制作用。

Selective inhibition of prostaglandin endoperoxide synthase-1 (cyclooxygenase-1) by valerylsalicylic acid.

作者信息

Bhattacharyya D K, Lecomte M, Dunn J, Morgans D J, Smith W L

机构信息

Department of Biochemistry, Michigan State University, East Lansing 48824.

出版信息

Arch Biochem Biophys. 1995 Feb 20;317(1):19-24. doi: 10.1006/abbi.1995.1130.

Abstract

Aspirin causes a time-dependent inhibition of prostaglandin endoperoxide H synthases (PGHS)-1 and -2 by acetylating active site serines present in both isozymes. In the case of PGHS-1, aspirin acetylation blocks cyclooxygenase activity, apparently by preventing arachidonate binding to the cyclooxygenase active site. With PGHS-2, acetylation does not block substrate binding but rather alters the enzyme in such a way that the acetylated form of PGHS-2 produces 15R-hydroxyeicosatetraenoic acid (15R-HETE) instead of the usual prostaglandin endoperoxide product. Based on these differences between PGHS-1 and PGHS-2, we reasoned that a salicylate ester containing an acyl group somewhat larger than the acetyl group of aspirin might be a selective inhibitor of PGHS-2. Accordingly, we prepared and tested eight different acyl salicylates as inhibitors of human (h) PGHS-1 and -2 expressed transiently in cos-1 cells. Valeryl(pentanoyl)salicylate (VSA) was the only compound in this series which showed isozyme selectivity, and, surprisingly, VSA inhibited hPGHS-1 much more effectively than hPGHS-2. Inhibition of hPGHS-1 by VSA was time-dependent. VSA also inhibited ovine PGHS-1 but did not inhibit the S530A mutant of ovine PGHS-1. This latter mutant, which lacks the active site serine hydroxyl group, is also refractory to inhibition by acetylsalicylate. Thus, we conclude that VSA acylates the active site serine of PGHS-1. VSA inhibited prostanoid synthesis by serum-starved murine NIH 3T3 cells which express only PGHS-1; in contrast, VSA caused only partial inhibition of prostanoid synthesis by serum-stimulated 3T3 cells which express both PGHS isozymes. Our results establish that VSA can be used as a reasonably selective inhibitor of PGHS-1.

摘要

阿司匹林通过乙酰化两种同工酶中存在的活性位点丝氨酸,对前列腺素内过氧化物H合酶(PGHS)-1和-2产生时间依赖性抑制作用。就PGHS-1而言,阿司匹林乙酰化会阻断环氧化酶活性,显然是通过阻止花生四烯酸与环氧化酶活性位点结合来实现的。对于PGHS-2,乙酰化不会阻断底物结合,而是以某种方式改变酶,使得PGHS-2的乙酰化形式产生15R-羟基二十碳四烯酸(15R-HETE),而不是通常的前列腺素内过氧化物产物。基于PGHS-1和PGHS-2之间的这些差异,我们推测含有比阿司匹林乙酰基稍大的酰基的水杨酸酯可能是PGHS-2的选择性抑制剂。因此,我们制备并测试了八种不同的酰基水杨酸酯作为在cos-1细胞中瞬时表达的人(h)PGHS-1和-2的抑制剂。戊酰(戊酰基)水杨酸酯(VSA)是该系列中唯一表现出同工酶选择性的化合物,令人惊讶的是,VSA对hPGHS-1的抑制作用比hPGHS-2更有效。VSA对hPGHS-1的抑制作用是时间依赖性的。VSA也抑制绵羊PGHS-1,但不抑制绵羊PGHS-1的S530A突变体。后一种突变体缺乏活性位点丝氨酸羟基,也对乙酰水杨酸酯的抑制作用具有抗性。因此,我们得出结论,VSA使PGHS-1的活性位点丝氨酸发生酰化。VSA抑制了仅表达PGHS-1的血清饥饿小鼠NIH 3T3细胞的类前列腺素合成;相反,VSA仅对表达两种PGHS同工酶的血清刺激的3T3细胞的类前列腺素合成产生部分抑制作用。我们的结果表明,VSA可以用作PGHS-1的合理选择性抑制剂。

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