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肝氧素的生物学作用:磷脂氢过氧化物谷胱甘肽过氧化物酶的上调作为细胞对氧化应激的反应?

Biological role of hepoxilins: upregulation of phospholipid hydroperoxide glutathione peroxidase as a cellular response to oxidative stress?

作者信息

Zafiriou M P, Deva R, Ciccoli R, Siafaka-Kapadai A, Nigam S

机构信息

Centre for Experimental Gynecology & Breast Research and Eicosanoid Research Division, Charité - Campus University Medical Centre Benjamin Franklin, Berlin, D-12200 Berlin, German.

出版信息

Prostaglandins Leukot Essent Fatty Acids. 2007 Oct-Nov;77(3-4):209-15. doi: 10.1016/j.plefa.2007.08.007. Epub 2007 Nov 7.

Abstract

The 12S-lipoxygenase (12S-LOX) pathway of arachidonic acid (AA) metabolism is bifurcated at 12(S)-hydroperoxy-5Z,8Z,10E (12S-HpETE) in the reduction route to form 12S-hydroxy-eicosatetraenoic acid (12S-HETE) and in 8(S/R)-hydroxy-11(S),12S-trans-epoxyeicosa-5Z,9E,14Z-trienoic acid (HXA3) synthase pathway, previously known as isomerization route, to form hepoxilins. Earlier we showed that the HXA3 formation is restricted to cellular systems devoid of hydroperoxide reducing enzymes, e.g. GPxs, thus causing a persistent oxidative stress situation. Here, we show that HXA3 at as low as 100 nM concentration upregulates phospholipid hydroperoxide glutathione peroxidase (PHGPx) mRNA and protein expressions, whereas other metabolites of AA metabolism 12S-HpETE and 12S-HETE failed to stimulate the PHGPx. Moreover, the decrease in 12S-HpETE below a threshold value of the hydroperoxide tone causes both suppression of the overall 12S-LOX activity and a shift from HXA3 formation towards 12S-HETE formation. We therefore propose that under persistent oxidative stress the formation of HXA3 and the HXA3-induced upregulation of PHGPx constitute a compensatory defense response to protect the vitality and functionality of the cell.

摘要

花生四烯酸(AA)代谢的12S-脂氧合酶(12S-LOX)途径在还原途径中于12(S)-氢过氧-5Z,8Z,10E(12S-HpETE)处发生分支,形成12S-羟基二十碳四烯酸(12S-HETE),而在8(S/R)-羟基-11(S),12S-反式-环氧二十碳-5Z,9E,14Z-三烯酸(HXA3)合酶途径(以前称为异构化途径)中形成肝氧素。早些时候我们表明,HXA3的形成仅限于缺乏过氧化氢还原酶(如谷胱甘肽过氧化物酶(GPxs))的细胞系统,从而导致持续的氧化应激状态。在此,我们表明,低至100 nM浓度的HXA3会上调磷脂氢过氧化物谷胱甘肽过氧化物酶(PHGPx)的mRNA和蛋白质表达,而AA代谢的其他代谢产物12S-HpETE和12S-HETE未能刺激PHGPx。此外,12S-HpETE降至过氧化氢水平阈值以下会导致整体12S-LOX活性受到抑制,并从HXA3形成转向12S-HETE形成。因此,我们提出,在持续的氧化应激下,HXA3的形成以及HXA3诱导的PHGPx上调构成一种补偿性防御反应,以保护细胞的活力和功能。

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