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醌还原酶 1(NQO1)介导的质膜电子传递的醌依赖性氧化还原循环的证据:用于 NQO1 的灵敏细胞测定法。

Evidence for NAD(P)H:quinone oxidoreductase 1 (NQO1)-mediated quinone-dependent redox cycling via plasma membrane electron transport: A sensitive cellular assay for NQO1.

机构信息

Malaghan Institute of Medical Research, Wellington, New Zealand.

出版信息

Free Radic Biol Med. 2010 Feb 1;48(3):421-9. doi: 10.1016/j.freeradbiomed.2009.11.016. Epub 2009 Nov 22.

Abstract

2,3-Dimethoxy 1,4-naphthoquinone (DMNQ), which redox cycles via two-electron reduction, mediates reduction of the cell-impermeative tetrazolium dye WST-1 in kidney epithelial cells (MDCK), which express high levels of NQO1, but not in HL60 or CHO cells, which are NQO1 deficient. DMNQ-dependent WST-1 reduction by MDCK cells was strongly inhibited by low concentrations of the NQO1 inhibitor dicoumarol and was also inhibited by diphenyleneiodonium, capsaicin, and superoxide dismutase (SOD), but not by the uncoupler FCCP or the complex IV inhibitor cyanide. This suggests that DMNQ-dependent WST-1 reduction by MDCK cells is catalyzed by NQO1 via redox cycling and plasma membrane electron transport (PMET). Interestingly, we observed an association between DMNQ/WST-1 reduction and extracellular H(2)O(2) production as determined by Amplex red. Exposure of MDCK cells to DMNQ for 48 h caused cellular toxicity that was extensively reversed by co-incubation with dicoumarol or exogenous SOD, catalase, or N-acetylcysteine. No effects were observed in NQO1-deficient CHO and HL60 cells. In conclusion, we have developed a simple real-time cellular assay for NQO1 and show that PMET plays a significant role in DMNQ redox cycling via NQO1, leading to cellular toxicity in cells with high NQO1 levels.

摘要

2,3-二甲氧基 1,4-萘醌(DMNQ)通过两电子还原进行氧化还原循环,介导高水平表达 NQO1 的肾上皮细胞(MDCK)中细胞不可渗透的四唑染料 WST-1 的还原,但不能还原 NQO1 缺失的 HL60 或 CHO 细胞。DMNQ 依赖性 MDCK 细胞的 WST-1 还原被低浓度的 NQO1 抑制剂二香豆素强烈抑制,也被二苯乙烯碘、辣椒素和超氧化物歧化酶(SOD)抑制,但不受解偶联剂 FCCP 或复合物 IV 抑制剂氰化物的抑制。这表明 DMNQ 依赖性 MDCK 细胞的 WST-1 还原是由 NQO1 通过氧化还原循环和质膜电子传递(PMET)催化的。有趣的是,我们观察到 DMNQ/WST-1 还原与通过 Amplex red 测定的细胞外 H2O2 产生之间存在关联。将 MDCK 细胞暴露于 DMNQ 48 小时会导致细胞毒性,这种毒性可通过与二香豆素或外源性 SOD、过氧化氢酶或 N-乙酰半胱氨酸共孵育而得到广泛逆转。在 NQO1 缺失的 CHO 和 HL60 细胞中未观察到任何影响。总之,我们开发了一种用于 NQO1 的简单实时细胞测定法,并表明 PMET 通过 NQO1 在 DMNQ 氧化还原循环中发挥重要作用,导致高水平 NQO1 的细胞发生细胞毒性。

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