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小鼠皮肤中8-羟基二十碳四烯酸生物合成机制的研究。

Investigation of the mechanism of biosynthesis of 8-hydroxyeicosatetraenoic acid in mouse skin.

作者信息

Hughes M A, Brash A R

机构信息

Department of Pharmacology, Vanderbilt University School of Medicine, Nashville, TN 37232-6602.

出版信息

Biochim Biophys Acta. 1991 Feb 5;1081(3):347-54. doi: 10.1016/0005-2760(91)90292-p.

Abstract

One of the many changes induced by topical application of phorbol ester or calcium ionophore A23187 to mouse skin is the appearance of an enzymic activity which will convert arachidonic acid to its 8-hydroxyeicosatetraenoic acid metabolite (8-HETE) (Gschwendt, M., et al (1986) Carcinogenesis 7, 449-455). Induction of this activity is lower in strains of mice with a weak inflammatory response to TPA, and the 8-HETE may be involved in the inflammation or hyperplasia. To further characterize the activity, we first measured the chirality of the product; it is almost exclusively the 8DS)-hydroxy enantiomer (8S-HETE). The 8(S)-HETE is formed from octadeuterated arachidonic acid with complete retention of deuterium labels, indicating that a keto intermediate is not involved in the biosynthesis. Using arachidonic acids labeled with a prochiral tritium in either the 10DR or 10LS positions, we found that the biosynthesis of 8S-HETE is associated with the stereoselective abstraction of the 10DR hydrogen from the 10-carbon of the substrate. This stereoselective hydrogen removal conforms to the properties of an 8S-lipoxygenase. This is the only lipoxygenase known to catalyze solely 8S-oxygenation of arachidonic acid. The recent characterization of stereoselective biological effects for other HETEs serve as strong precedents to suggest that 8S-HETE has a specific role in the cellular tissue response to TPA.

摘要

在小鼠皮肤上局部应用佛波酯或钙离子载体A23187所引发的众多变化之一,是出现了一种酶活性,该活性可将花生四烯酸转化为其8-羟基二十碳四烯酸代谢物(8-HETE)(施温特,M.等人,(1986年)《癌变》7卷,449 - 455页)。在对佛波醇肉豆蔻酸乙酸酯(TPA)炎症反应较弱的小鼠品系中,这种活性的诱导较低,并且8-HETE可能参与炎症或增生过程。为了进一步表征该活性,我们首先测量了产物的手性;它几乎完全是8(S)-羟基对映体(8S-HETE)。8(S)-HETE由十八氘代花生四烯酸形成,氘标记完全保留,这表明生物合成过程中不涉及酮中间体。使用在10R或10S位置用前手性氚标记的花生四烯酸,我们发现8S-HETE的生物合成与从底物10-碳上立体选择性提取10R氢相关。这种立体选择性氢去除符合8S-脂氧合酶的特性。这是已知唯一能催化花生四烯酸仅8S-氧化的脂氧合酶。最近对其他HETEs立体选择性生物学效应的表征,有力地表明8S-HETE在细胞组织对TPA的反应中具有特定作用。

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