首页> 美国卫生研究院文献>Biochemical Journal >Evidence for the presence of phospholipid hydroperoxide glutathione peroxidase in human platelets: implications for its involvement in the regulatory network of the 12-lipoxygenase pathway of arachidonic acid metabolism.
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Evidence for the presence of phospholipid hydroperoxide glutathione peroxidase in human platelets: implications for its involvement in the regulatory network of the 12-lipoxygenase pathway of arachidonic acid metabolism.

机译:人体血小板中磷脂氢过氧化物谷胱甘肽过氧化物酶的存在的证据:其参与花生四烯酸代谢的12-脂加氧酶途径的调控网络的影响。

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摘要

The 12-lipoxygenase pathway of arachidonic acid metabolism in platelets and other cells is bifurcated into a reduction route yielding 12-hydroxyeicosatetraenoic acid (12-HETE) and an isomerization route forming hepoxilins. Here we show for the first time the presence of phospholipid hydroperoxide glutathione peroxidase (PHGPx) protein and its activity in platelets. The ratio of the activity of PHGPx to that of cytosolic glutathione peroxidase (GPx-1) was consistently found to be approx. 1:60 in platelets and UT7 megakaryoblasts. Moreover, short-lived PHGPx mRNA was detected in megakaryocytes but not in platelets. Carboxymethylation of selenium-containing glutathione peroxidases by iodoacetate, which results in the inactivation of PHGPx and GPx-1 without inhibition of 12-lipoxygenase, markedly altered the pattern of arachidonic acid metabolism in human platelets. Whereas the formation of 12-HETE was inhibited by 80%, a concomitant accumulation of 12-hydroperoxyeicosatetraenoic acid (12-HpETE) by two orders of magnitude as well as the formation of hepoxilins A(3) and B(3) were observed. The formation of hepoxilins also occurred when 12-HpETE was added to untreated platelets. In selenium-deficient UT7 cells, which were devoid of GPx-1 but not of PHGPx, the reduction of 12-HPETE was retained, albeit with a lower rate than in control cells containing GPx-1. We therefore believe that both GPx-1 and PHGPx are involved in the regulatory network of the 12-lipoxygenase pathway in platelets and other mammalian cells. Moreover, the diminution of hydroperoxide tone in platelets incubated with arachidonic acid leads primarily to the formation of 12-HETE, whereas the increase in hydroperoxide tone (a situation found under oxidative stress or selenium deficiency or on incubation with 12-HPETE) partly diverts the 12-lipoxygenase pathway from the reduction route to the isomerization route, thus resulting in the formation of hepoxilins.
机译:血小板和其他细胞中花生四烯酸代谢的12-脂氧合酶途径分为两部分,一条是还原途径,产生12-羟基二十碳四烯酸(12-HETE);另一种是形成hepoxilins的异构化途径。在这里,我们首次显示了磷脂氢过氧化物谷胱甘肽过氧化物酶(PHGPx)蛋白的存在及其在血小板中的活性。始终发现PHGPx的活性与胞质谷胱甘肽过氧化物酶(GPx-1)的活性比率为约。 1:60在血小板和UT7巨核细胞中。此外,在巨核细胞中检测到了短暂的PHGPx mRNA,但在血小板中未检测到。碘乙酸盐可对含硒的谷胱甘肽过氧化物酶进行羧甲基化作用,导致PHGPx和GPx-1失活而不抑制12-脂加氧酶,从而显着改变了人体血小板中花生四烯酸代谢的模式。尽管12-HETE的形成被抑制了80%,但同时观察到12-氢过氧二十二碳四烯酸(12-HpETE)的累积量增加了两个数量级,同时还观察到了Hepoxilins A(3)和B(3)的形成。当将12-HpETE加入未处理的血小板中时,也会发生hepoxilins的形成。在缺乏GPx-1但没有PHGPx的缺硒UT7细胞中,保留了12-HPETE的减少,尽管其速率比含有GPx-1的对照细胞低。因此,我们认为GPx-1和PHGPx都参与了血小板和其他哺乳动物细胞中12-脂氧合酶途径的调控网络。此外,与花生四烯酸孵育的血小板中氢过氧化物基调的减少主要导致12-HETE的形成,而氢过氧化物基调的增加(在氧化应激或硒缺乏或与12-HPETE孵育时发现)会部分转移从还原途径到异构化途径的12-脂氧合酶途径,从而导致苏木精的形成。

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