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NOX4活性由mRNA水平决定,并揭示了一种独特的活性氧生成模式。

NOX4 activity is determined by mRNA levels and reveals a unique pattern of ROS generation.

作者信息

Serrander Lena, Cartier Laetitia, Bedard Karen, Banfi Botond, Lardy Bernard, Plastre Olivier, Sienkiewicz Andrzej, Fórró Lászlo, Schlegel Werner, Krause Karl-Heinz

机构信息

Foundation for Medical Research, University of Geneva, 64 av de la Roseraie, 1205, Geneva, Switzerland.

出版信息

Biochem J. 2007 Aug 15;406(1):105-14. doi: 10.1042/BJ20061903.

Abstract

NOX4 is an enigmatic member of the NOX (NADPH oxidase) family of ROS (reactive oxygen species)-generating NADPH oxidases. NOX4 has a wide tissue distribution, but the physiological function and activation mechanisms are largely unknown, and its pharmacology is poorly understood. We have generated cell lines expressing NOX4 upon tetracycline induction. Tetracycline induced a rapid increase in NOX4 mRNA (1 h) followed closely (2 h) by a release of ROS. Upon tetracycline withdrawal, NOX4 mRNA levels and ROS release decreased rapidly (<24 h). In membrane preparations, NOX4 activity was selective for NADPH over NADH and did not require the addition of cytosol. The pharmacological profile of NOX4 was distinct from other NOX isoforms: DPI (diphenyleneiodonium chloride) and thioridazine inhibited the enzyme efficiently, whereas apocynin and gliotoxin did not (IC(50)>100 muM). The pattern of NOX4-dependent ROS generation was unique: (i) ROS release upon NOX4 induction was spontaneous without need for a stimulus, and (ii) the type of ROS released from NOX4-expressing cells was H(2)O(2), whereas superoxide (O(2)(-)) was almost undetectable. Probes that allow detection of intracellular O(2)(-) generation yielded differential results: DHE (dihydroethidium) fluorescence and ACP (1-acetoxy-3-carboxy-2,2,5,5-tetramethylpyrrolidine) ESR measurements did not detect any NOX4 signal, whereas a robust signal was observed with NBT. Thus NOX4 probably generates O(2)(-) within an intracellular compartment that is accessible to NBT (Nitro Blue Tetrazolium), but not to DHE or ACP. In conclusion, NOX4 has a distinct pharmacology and pattern of ROS generation. The close correlation between NOX4 mRNA and ROS generation might hint towards a function as an inducible NOX isoform.

摘要

NOX4是产生活性氧(ROS)的NADPH氧化酶的NOX(NADPH氧化酶)家族中一个神秘的成员。NOX4在组织中分布广泛,但其生理功能和激活机制在很大程度上尚不清楚,对其药理学了解也很少。我们构建了在四环素诱导下表达NOX4的细胞系。四环素诱导后,NOX4 mRNA迅速增加(1小时),紧接着(2小时)ROS释放。四环素撤除后,NOX4 mRNA水平和ROS释放迅速下降(<24小时)。在膜制剂中,NOX4活性对NADPH的选择性高于NADH,且不需要添加胞质溶胶。NOX4的药理学特征与其他NOX亚型不同:二苯基碘鎓氯化物(DPI)和硫利达嗪能有效抑制该酶,而阿朴吗啡和胶质毒素则不能(半数抑制浓度>100μM)。NOX4依赖性ROS生成模式独特:(i)NOX4诱导后ROS释放是自发的,无需刺激;(ii)表达NOX4的细胞释放的ROS类型为过氧化氢(H₂O₂),而超氧阴离子(O₂⁻)几乎检测不到。用于检测细胞内O₂⁻生成的探针产生了不同的结果:二氢乙锭(DHE)荧光和1-乙酰氧基-3-羧基-2,2,5,5-四甲基吡咯烷(ACP)电子自旋共振测量未检测到任何NOX4信号,而用硝基蓝四唑(NBT)观察到强烈信号。因此,NOX4可能在细胞内一个可被NBT(但不能被DHE或ACP)进入的区室中生成O₂⁻。总之,NOX4具有独特的药理学和ROS生成模式。NOX4 mRNA与ROS生成之间的密切相关性可能暗示其作为一种可诱导的NOX亚型的功能。

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