A novel plasma membrane quinone reductase and NAD(P)H:quinone oxidoreductase 1 are upregulated by serum withdrawal in human promyelocytic HL-60 cells

被引:17
作者
Forthoffer, N [1 ]
Gómez-Díaz, C [1 ]
Bello, RI [1 ]
Burón, MI [1 ]
Martín, SF [1 ]
Rodríguez-Aguilera, JC [1 ]
Navas, P [1 ]
Villalba, JM [1 ]
机构
[1] Univ Cordoba, Fac Ciencias, Dept Biol Celular Fisiol & Immunol, Cordoba 14014, Spain
关键词
cell death; NQO1 (DT-diaphorase); oxidative stress; plasma membrane; quinone reductase; serum-withdrawal;
D O I
10.1023/A:1016035504049
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
We have studied changes in plasma membrane NAD(P)H:quinone oxidoreductases of HL-60 cells under serum withdrawal conditions, as a model to analyze cell responses to oxidative stress. Highly enriched plasma membrane fractions were obtained from cell homogenates. A major part of NADH-quinone oxidoreductase in the plasma membrane was insensitive to micromolar concentrations of dicumarol, a specific inhibitor of the NAD(P)H:quinone oxidoreductase 1 (NQO1, DT-diaphorase), and only a minor portion was characterized as DT-diaphorase. An enzyme with properties of a cytochrome b(5) reductase accounted for most dicumarol-resistant quinone reductase activity in HL-60 plasma membranes. The enzyme used mainly NADH as donor, it reduced coenzyme Q(0) through a one-electron mechanism with generation of superoxide, and its inhibition profile by p-hydroxymercuribenzoate was similar to that of authentic cytochrome b(5) reductase. Both NQO1 and a novel dicumarol-insensitive quinone reductase that was not accounted by a cytochrome b(5) reductase were significantly increased in plasma membranes after serum deprivation, showing a peak at 32 h of treatment. The reductase was specific for NADH, did not generate superoxide during quinone reduction, and was significantly resistant to p-hydroxymercuribenzoate. The function of this novel quinone reductase remains to be elucidated whereas dicumarol inhibition of NQO1 strongly potentiated growth arrest and decreased viability of HL-60 cells in the absence of serum. Our results demonstrate that upregulation of two-electron quinone reductases at the plasma membrane is a mechanism evoked by cells for defense against oxidative stress caused by serum withdrawal.
引用
收藏
页码:209 / 219
页数:11
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