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首页> 外文期刊>Biological chemistry >The Specificity of Lipoxygenase-Catalyzed Lipid Peroxidation and the Effects of Radical-Scavenging Antioxidants
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The Specificity of Lipoxygenase-Catalyzed Lipid Peroxidation and the Effects of Radical-Scavenging Antioxidants

机译:脂氧合酶催化的脂质过氧化的特异性和清除自由基的抗氧化剂的作用

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摘要

The oxidation of low density lipoprotein (LDL) by lipoxygenase has been implicated in the pathogenesis of atherosclerosis. it has been known that lipoxygenase-mediated lipid peroxidation proceeds in general via regio-, stereo- and enantio-specific mechanisms, but that it is sometimes accompanied by a share of random hydroperoxides as side reaction products. in this study we investigated the oxidation of various substrates (linoleic acid, methyl linoleate, phosphatidylcholine, isolated LDL, and human plasma) by the arachidonate 15-lipoxygenases from rabbit reticulocytes and soybeans aiming at elucidating the effects of substrate, lipoxygenase and reaction milieu on the contribution and mechanism of random oxidation and also the effect of antioxidant. The specific character of the rabbit 15-lipoxygenase reaction was confirmed under all conditions employed here. However, the specificity by soybean lipoxygenase was markedly dependent on the conditions. When phosphatidylcholine liposomes and LDL were oxygenated by soybean lipoxygenase, the product pattern was found to be exclusively regio-, stereo-, and enantio-random. When free linoleic acid was incorporated into PC liposomes and oxidized by soybean lipoxygenase, the free acid was specifically oxygenated, whereas esterified linoleate gave random oxidation products exclusively. Radical-scavenging antioxidants such as α-tocopherol, ascorbic acid and 2-carboxy-2,5,7,8-tetramethyl-6-chromanol selectively inhibited the random oxidation but did not influence specific product formation. It is assumed that the random reaction products originate from free radical intermediates, which have escaped the active site of the enzyme and thus may be accessible to radical scavengers. These data indicate that the specificity of lipoxygenase-catalyzed lipid oxidation and the inhibitory effects of antioxidants depend on the physico-chemical state of the substrate and type of lipoxygenase and that they may change completely depending on the conditions.
机译:脂氧合酶对低密度脂蛋白(LDL)的氧化作用与动脉粥样硬化的发病机理有关。已知脂氧合酶介导的脂质过氧化通常通过区域,立体和对映体特异性机制进行,但是有时伴随着一部分随机氢过氧化物作为副反应产物。在这项研究中,我们研究了兔网织红细胞和大豆中花生四烯酸酯15-脂氧合酶对各种底物(亚油酸,亚油酸甲酯,磷脂酰胆碱,分离的LDL和人血浆)的氧化作用,旨在阐明底物,脂氧合酶和反应环境对随机氧化的作用和机理,以及抗氧化剂的作用。在本文采用的所有条件下,证实了兔15-脂加氧酶反应的特异性。但是,大豆脂氧合酶的特异性明显取决于条件。当大豆脂氧合酶将磷脂酰胆碱脂质体和LDL氧化时,发现产物模式仅具有区域,立体和对映体随机性。当将游离亚油酸掺入PC脂质体中并被大豆脂氧合酶氧化时,游离酸被特定地氧化,而酯化的亚油酸酯仅提供随机氧化产物。清除自由基的抗氧化剂,如α-生育酚,抗坏血酸和2-羧基-2,5,7,8-四甲基-6-苯并二氢苯并二氢吡喃酚选择性抑制了随机氧化,但不影响特定产物的形成。假定随机反应产物源自自由基中间体,该自由基中间体已经逃脱了酶的活性位点,因此自由基清除剂可以接近。这些数据表明,脂氧合酶催化的脂质氧化的特异性和抗氧化剂的抑制作用取决于底物的物理化学状态和脂氧合酶的类型,并且它们可能根据条件而完全改变。

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