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来自大豆和兔网织红细胞的脂氧合酶:失活与铁释放

Lipoxygenases from soybeans and rabbit reticulocytes: inactivation and iron release.

作者信息

Höhne W E, Kojima N, Thiele B, Rapoport S M

机构信息

Institute of Biochemistry, Humboldt University of Berlin, FRG.

出版信息

Biomed Biochim Acta. 1991;50(2):125-38.

PMID:1908675
Abstract

Various inactivation methods were applied to lipoxygenases from soybean (isoenzyme 1) and rabbit reticulocytes to compare the inactivation behaviour of both enzymes and to elucidate the state of the iron which is known to be involved in the catalytic reaction of lipoxygenases: 1. Titration of the enzyme with mercury compounds shows that there are one or two SH groups responsible for the loss of activity in the presence of mercury. The SH groups seem not to be involved in the tight iron binding. 2. Inactivation by chelating agents such as o-phenanthroline or batho-phenanthroline sulfonic acid occurs only in the presence of reducing agents (mercaptoethanol and ascorbic acid). Our data support a co-oxidation mechanism. The complexation of iron by chelators is not the rate-limiting step. Both lipoxygenases show a very similar behaviour in this respect despite the fact that the reticulocyte enzyme requires the addition of trace amounts of copper ions for efficient inactivation. 3. Release of iron from the enzyme is also achieved by denaturation with guanidinium hydrochloride (Gu-HCl). In all cases, inactivation and release of iron were irreversible processes. 4. A sequence comparison for both animal and plant lipoxygenases shows strongly conserved amino acids, especially histidines and hydrophobic residues, which possibly may be involved in iron complexation and substrate binding.

摘要

采用多种失活方法处理大豆(同工酶1)和兔网织红细胞中的脂氧合酶,以比较这两种酶的失活行为,并阐明已知参与脂氧合酶催化反应的铁的状态:1. 用汞化合物滴定酶表明,在汞存在下,有一个或两个SH基团负责活性丧失。这些SH基团似乎不参与紧密的铁结合。2. 螯合剂如邻菲罗啉或磺酸邻菲罗啉的失活仅在还原剂(巯基乙醇和抗坏血酸)存在下发生。我们的数据支持共氧化机制。螯合剂对铁的络合不是限速步骤。尽管网织红细胞酶需要添加微量铜离子才能有效失活,但两种脂氧合酶在这方面表现出非常相似的行为。3. 用盐酸胍(Gu-HCl)变性也可使铁从酶中释放出来。在所有情况下,失活和铁的释放都是不可逆过程。4. 对动物和植物脂氧合酶的序列比较显示出高度保守的氨基酸,尤其是组氨酸和疏水残基,它们可能参与铁络合和底物结合。

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