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分子氧在脂氧合酶激活中的作用:表皮脂氧合酶-3 与大豆脂氧合酶-1 的比较和对比。

On the role of molecular oxygen in lipoxygenase activation: comparison and contrast of epidermal lipoxygenase-3 with soybean lipoxygenase-1.

机构信息

Department of Pharmacology and the Vanderbilt Institute of Chemical Biology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.

出版信息

J Biol Chem. 2010 Dec 17;285(51):39876-87. doi: 10.1074/jbc.M110.180794. Epub 2010 Oct 5.

DOI:10.1074/jbc.M110.180794
PMID:20923767
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3000969/
Abstract

The oxygenation of polyunsaturated fatty acids by lipoxygenases (LOX) is associated with a lag phase during which the resting ferrous enzyme is converted to the active ferric form by reaction with fatty acid hydroperoxide. Epidermal lipoxygenase-3 (eLOX3) is atypical in displaying hydroperoxide isomerase activity with fatty acid hydroperoxides through cycling of the ferrous enzyme. Yet eLOX3 is capable of dioxygenase activity, albeit with a long lag phase and need for high concentrations of hydroperoxide activator. Here, we show that higher O(2) concentration shortens the lag phase in eLOX3, although it reduces the rate of hydroperoxide consumption, effects also associated with an A451G mutation known to affect the disposition of molecular oxygen in the LOX active site. These observations are consistent with a role of O(2) in interrupting hydroperoxide isomerase cycling. Activation of eLOX3, A451G eLOX3, and soybean LOX-1 with 13-hydroperoxy-linoleic acid forms oxygenated end products, which we identified as 9R- and 9S-hydroperoxy-12S,13S-trans-epoxyoctadec-10E-enoic acids. We deduce that activation partly depends on reaction of O(2) with the intermediate of hydroperoxide cleavage, the epoxyallylic radical, giving an epoxyallylic peroxyl radical that does not further react with Fe(III)-OH; instead, it dissociates and leaves the enzyme in the activated free ferric state. eLOX3 differs from soybean LOX-1 in more tightly binding the epoxyallylic radical and having limited access to O(2) within the active site, leading to a deficiency in activation and a dominant hydroperoxide isomerase activity.

摘要

脂氧合酶 (LOX) 将多不饱和脂肪酸氧化,在此过程中,静止的亚铁酶通过与脂肪酸氢过氧化物反应转化为活性的三价铁形式,这与一个滞后阶段相关联。表皮脂氧合酶-3 (eLOX3) 通过亚铁酶的循环表现出脂肪酸氢过氧化物异构酶活性,这是非典型的。然而,eLOX3能够进行双加氧酶活性,尽管具有较长的滞后阶段和需要高浓度的氢过氧化物激活剂。在这里,我们表明较高的 O(2) 浓度缩短了 eLOX3 的滞后阶段,尽管它降低了氢过氧化物消耗的速率,这也与已知影响 LOX 活性位点中分子氧分布的 A451G 突变有关。这些观察结果与 O(2) 在中断氢过氧化物异构酶循环中的作用一致。用 13-羟基-亚油酸激活 eLOX3、A451G eLOX3 和大豆 LOX-1,形成氧化的终产物,我们鉴定为 9R-和 9S-羟基-12S,13S-反式-环氧十八碳-10E-烯酸。我们推断,激活部分取决于 O(2) 与氢过氧化物裂解的中间体,即环氧化烯丙基自由基的反应,生成不会进一步与 Fe(III)-OH 反应的环氧化烯丙基过氧自由基;相反,它解离并使酶处于激活的游离三价铁状态。eLOX3 与大豆 LOX-1 的不同之处在于它更紧密地结合环氧化烯丙基自由基,并且在活性位点内对 O(2) 的访问有限,导致激活不足和主要的氢过氧化物异构酶活性。

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2
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5
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6
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