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Various Molecular Species of Diacylglycerol Hydroperoxide Activate Human Neutrophils via PKC Activation

机译:氢过氧化物二酰基甘油的各种分子种类通过PKC活化来活化人中性粒细胞

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摘要

We have proposed that diacylglycerol hydroperoxide-induced unregulated signal transduction causes oxidative stress-related diseases. In this study, we investigated which molecular species of diacylglycerol hydroperoxide activated human peripheral neutrophils. All diacylglycerol hydroperoxides, diacylglycerol hydroxides, and diacyglycerols tested in the present study induced superoxide production by neutrophils. The ability to activate neutrophils among molecular species containing the same fatty acid composition was as follows; diacylglycerol hydroperoxide>diacylglycerol hydroxide≥diacylglycerol. The diacylglycerol hydroperoxide composed of linoleate was a stronger activator for neutrophils than that composed of arachidonate. 1-Palmitoyl-2-linoleoylglycerol hydroperoxide (PLG-OOH) was the strongest stimulator for neutrophils. We reconfirmed that PLG-OOH activated protein kinase C (PKC) in neutrophils. PLG-OOH induced the phosphorylation of p47phox, a substrate of PKC and a cytosolic component of NADPH oxidase, in neutrophils, as did N-formyl-methionyl-leucyl-phenylalanine or 4β-phorbol-12β-myristate-13α-acetate. Moreover, the time course of p47phox phosphorylation was comparable to that of superoxide production. These results suggest that PLG-OOH activated intracellular protein kinase C. PLG-OOH, produced via an uncontrolled process, can act as a biological second messenger to cause inflammatory disease from oxidative stress.
机译:我们已经提出过氧化二酰基甘油引起的不受调节的信号转导引起与氧化应激相关的疾病。在这项研究中,我们调查了过氧化二酰基甘油的分子种类激活了人类外周血中性粒细胞。在本研究中测试的所有二酰基甘油氢过氧化物,二酰基甘油氢氧化物和二酰基甘油都诱导嗜中性粒细胞产生超氧化物。具有相同脂肪酸组成的分子种类之间的嗜中性粒细胞活化能力如下。氢过氧化二酰基甘油>氢氧化二酰基甘油≥二酰基甘油。由亚油酸酯组成的二酰基甘油氢过氧化物比由花生四烯酸酯组成的中性粒细胞更强。 1-棕榈酰-2-亚麻油酰甘油氢过氧化物(PLG-OOH)是嗜中性粒细胞的最强刺激物。我们再次证实中性粒细胞中PLG-OOH激活了蛋白激酶C(PKC)。 PLG-OOH诱导嗜中性粒细胞中的p47 phox ,PKC的底物和NADPH氧化酶的胞质组分的磷酸化,N-甲酰基-甲硫酰基-亮氨酰-苯丙氨酸或4β-phorbol-12β-肉豆蔻酸13α-乙酸盐。此外,p47 phox 磷酸化的时间过程与超氧化物的产生时间相当。这些结果表明,PLG-OOH激活了细胞内蛋白激酶C。通过不受控制的过程产生的PLG-OOH可以充当生物第二信使,从而引起氧化应激引起的炎症性疾病。

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