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前列腺素内过氧化物合酶。阿司匹林乙酰化区域。

Prostaglandin endoperoxide synthase. The aspirin acetylation region.

作者信息

Shimokawa T, Smith W L

机构信息

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

出版信息

J Biol Chem. 1992 Jun 15;267(17):12387-92.

PMID:1601897
Abstract

Aspirin selectively acetylates Ser-530 of prostaglandin endoperoxide (PGH) synthase-1. This causes inactivation of the cyclooxygenase activity of the enzyme, but does not appreciably affect its peroxidase activity. Although the aspirin-acetylated enzyme is inactive, we found that PGH synthase-1 in which Ser-530 had been replaced with an alanine was catalytically active; accordingly, we proposed that aspirin inhibits cyclooxygenase activity by placing a larger than normal side chain at position 530 thereby interfering with arachidonate binding (DeWitt, D.L., El-Harith, E. A., Kraemer, S. A., Andrews, M. J., Yao, E. F., Armstrong, R. L., and Smith, W. L. (1990) J. Biol. Chem. 265, 5192-5198). As a further test of this hypothesis we have used site-directed mutagenesis and transient expression in cos-1 cells to prepare and characterize five additional substitutions of Ser-530. Consistent with our proposal, the presence of amino acids with bulky side chains at position 530 inhibited cyclooxygenase activity and decreased the apparent affinity of the enzyme for arachidonate. In related work, we characterized a series of mutant PGH synthases-1 having substitutions at residues adjoining Ser-530, including Phe-529, Leu-531, Lys-532, and Gly-533, in order to evaluate the contributions of each residue to cyclooxygenase catalysis. The most significant conclusion of this part of the study is that residues 529-533 all are important for the peroxidase activity as well as the cyclooxygenase activity of PGH synthase-1. Phe-529, in particular, was found to be critical for PGH synthase-1 structure and catalysis; some substitutions at this position led to the production of proteins lacking about 100 amino acids from their COOH termini.

摘要

阿司匹林选择性地使前列腺素内过氧化物(PGH)合酶-1的丝氨酸-530发生乙酰化。这导致该酶的环氧化酶活性失活,但对其过氧化物酶活性没有明显影响。尽管阿司匹林乙酰化的酶没有活性,但我们发现丝氨酸-530被丙氨酸取代的PGH合酶-1具有催化活性;因此,我们提出阿司匹林通过在530位放置一个比正常侧链更大的侧链来抑制环氧化酶活性,从而干扰花生四烯酸的结合(德威特,D.L.,埃尔-哈里思,E.A.,克雷默,S.A.,安德鲁斯,M.J.,姚,E.F.,阿姆斯特朗,R.L.,和史密斯,W.L.(1990年)《生物化学杂志》265,5192 - 5198)。作为对这一假设的进一步检验,我们利用定点诱变和在cos - 1细胞中的瞬时表达来制备并表征丝氨酸-530的另外五个取代物。与我们的提议一致,530位带有大侧链氨基酸的存在抑制了环氧化酶活性,并降低了该酶对花生四烯酸的表观亲和力。在相关工作中,我们表征了一系列在与丝氨酸-530相邻的残基处有取代的突变型PGH合酶-1,包括苯丙氨酸-529、亮氨酸-531、赖氨酸-532和甘氨酸-533,以评估每个残基对环氧化酶催化的贡献。该研究这一部分最重要的结论是,529 - 533位残基对PGH合酶-1的过氧化物酶活性以及环氧化酶活性都很重要。特别是,苯丙氨酸-529被发现对PGH合酶-1的结构和催化至关重要;该位置的一些取代导致产生的蛋白质从其COOH末端缺少约100个氨基酸。

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