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首页> 外文期刊>Toxicological Sciences >Paraquat Exposure Induces Nuclear Translocation of Glyceraldehyde-3-Phosphate Dehydrogenase (GAPDH) and the Activation of the Nitric Oxide-GAPDH-Siah Cell Death Cascade
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Paraquat Exposure Induces Nuclear Translocation of Glyceraldehyde-3-Phosphate Dehydrogenase (GAPDH) and the Activation of the Nitric Oxide-GAPDH-Siah Cell Death Cascade

机译:百草枯暴露诱导甘油醛-3-磷酸脱氢酶(GAPDH)的核易位和一氧化氮-GAPDH-Siah细胞死亡级联的激活。

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摘要

Paraquat (PQ) is a well-known herbicide that exerts its effects by elevating intracellular levels of superoxide. It has been previously demonstrated that oxidative and nitrosative stress participate to PQ-induced cell death. Here, we document that PQ increases the levels of nitric oxide (NO) in rat mesencephalic cells and causes nuclear translocation of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) to activate the NO/GAPDH/Siah cell death cascade. PQ exposure increases expression of the p300/CREB-binding protein (p300/CBP) and phosphorylation of p53 at Ser 15, which stimulates p53-dependent transactivation through increased binding with p300. Although this cascade could be inhibited by preincubation with the monoamine oxidase B inhibitor deprenyl, cell death was not prevented. Pretreatment of cells with the neuronal nitric oxide synthase inhibitor 7-nitroindazole efficiently prevented the activation of the GAPDH/NO/Siah cell death cascade, thereby protecting cells against PQ-induced toxicity. The results suggest that PQ induces this novel cell death cascade in rat mesencephalic cells, but inhibition of the pathway does not impede cell death because of an oxidative burst generated by the pesticide.
机译:百草枯(PQ)是一种众所周知的除草剂,它通过提高细胞内超氧化物水平来发挥其作用。先前已经证明氧化应激和亚硝化应激参与PQ诱导的细胞死亡。在这里,我们证明PQ会增加大鼠中脑细胞中一氧化氮(NO)的水平,并引起3-磷酸甘油醛脱氢酶(GAPDH)的核转运,从而激活NO / GAPDH / Siah细胞死亡级联反应。 PQ暴露可增加p300 / CREB结合蛋白(p300 / CBP)的表达和Ser 15上p53的磷酸化,从而通过增加与p300的结合刺激p53依赖性反式激活。尽管可以通过与单胺氧化酶B抑制剂deprenyl一起预孵育来抑制这种级联反应,但仍无法防止细胞死亡。用神经元一氧化氮合酶抑制剂7-硝基吲唑预处理细胞可以有效地阻止GAPDH / NO / Siah细胞死亡级联反应的激活,从而保护细胞免受PQ诱导的毒性。结果表明,PQ在大鼠中脑细胞中诱导了这种新的细胞死亡级联反应,但是由于该农药产生的氧化性爆发,抑制该途径不会阻止细胞死亡。

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