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人类环氧化酶-2 序列同源二聚体中预先存在的不对称性。

Pre-existent asymmetry in the human cyclooxygenase-2 sequence homodimer.

机构信息

From the Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan 48109.

出版信息

J Biol Chem. 2013 Oct 4;288(40):28641-55. doi: 10.1074/jbc.M113.505503. Epub 2013 Aug 16.

Abstract

Prostaglandin endoperoxide H synthase-2 (PGHS-2), also known as cyclooxygenase-2 (COX-2), is a sequence homodimer. However, the enzyme exhibits half-site heme and inhibitor binding and functions as a conformational heterodimer having a catalytic subunit (Ecat) with heme bound and an allosteric subunit (Eallo) lacking heme. Some recombinant heterodimers composed of a COX-deficient mutant subunit and a native subunit (i.e. Mutant/Native PGHS-2) have COX activities similar to native PGHS-2. This suggests that the presence of heme plus substrate leads to the subunits becoming lodged in a semi-stable Eallo-mutant/Ecat-Native∼heme form during catalysis. We examined this concept using human PGHS-2 dimers composed of combinations of Y385F, R120Q, R120A, and S530A mutant or native subunits. With some heterodimers (e.g. Y385F/Native PGHS-2), heme binds with significantly higher affinity to the native subunit. This correlates with near native COX activity for the heterodimer. With other heterodimers (e.g. S530A/Native PGHS-2), heme binds with similar affinities to both subunits, and the COX activity approximates that expected for an enzyme in which each monomer contributes equally to the net COX activity. With or without heme, aspirin acetylates one-half of the subunits of the native PGHS-2 dimer, the Ecat subunits. Subunits having an S530A mutation are refractory to acetylation. Curiously, aspirin acetylates only one-quarter of the monomers of S530A/Native PGHS-2 with or without heme. This implies that there are comparable amounts of two noninterchangeable species of apoenzymes, Eallo-S530A/Ecat-Native and Eallo-Native/Ecat-S530A. These results suggest that native PGHS-2 assumes a reasonably stable, asymmetric Eallo/Ecat form during its folding and processing.

摘要

前列腺素内过氧化物合酶-2(PGHS-2),也称为环氧化酶-2(COX-2),是一种序列同源二聚体。然而,该酶表现出半位点血红素和抑制剂结合,并作为构象异二聚体发挥作用,具有结合血红素的催化亚基(Ecat)和缺乏血红素的别构亚基(Eallo)。一些由 COX 缺陷突变亚基和天然亚基组成的重组异二聚体(即 Mutant/Native PGHS-2)具有类似于天然 PGHS-2 的 COX 活性。这表明血红素加底物的存在导致亚基在催化过程中变成半稳定的 Eallo-mutant/Ecat-Native∼heme 形式。我们使用由 Y385F、R120Q、R120A 和 S530A 突变或天然亚基组成的人 PGHS-2 二聚体检查了这一概念。对于一些异二聚体(例如 Y385F/Native PGHS-2),血红素与天然亚基的结合亲和力显著提高。这与异二聚体的近天然 COX 活性相关。对于其他异二聚体(例如 S530A/Native PGHS-2),血红素与两个亚基的结合亲和力相似,而 COX 活性接近每个单体对净 COX 活性相等贡献的酶的预期。有或没有血红素,阿司匹林乙酰化天然 PGHS-2 二聚体的一半亚基,即 Ecat 亚基。具有 S530A 突变的亚基对乙酰化有抗性。奇怪的是,有或没有血红素,阿司匹林仅乙酰化 S530A/Native PGHS-2 的四分之一单体。这意味着存在相当数量的两种不可互换的脱辅基酶,Eallo-S530A/Ecat-Native 和 Eallo-Native/Ecat-S530A。这些结果表明,天然 PGHS-2 在其折叠和加工过程中采用了一种相当稳定、不对称的 Eallo/Ecat 形式。

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