首页> 美国卫生研究院文献>Biochemical Journal >The respiratory-chain poison antimycin A promotes the formation of DNA single-strand breaks and reduces toxicity in U937 cells exposed to t-butylhydroperoxide.
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The respiratory-chain poison antimycin A promotes the formation of DNA single-strand breaks and reduces toxicity in U937 cells exposed to t-butylhydroperoxide.

机译:呼吸链毒物抗霉素A促进DNA单链断裂的形成,并降低暴露于叔丁基过氧化氢的U937细胞的毒性。

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摘要

Antimycin A at levels that abolish oxygen consumption had a slight, although statistically significant, inhibitory effect on the toxicity elicited by t-butylhydroperoxide in U937 cells. The protective effect was observed after 6 h of post-treatment incubation, but was no longer apparent after 24 h. Unexpectedly, these events were associated with a marked accumulation of DNA single-strand breaks produced by low levels of t-butylhydroperoxide. Both an oxygen- and a carbon-centred radical were found to arise during treatment with t-butylhydroperoxide, and their formation was significantly lowered by antimycin A. Thus inhibition of electron transport at the level of complex III appears (a) to decrease the formation of toxic species which mediate, at least partially, the lethal effects elicited by t-butylhydroperoxide, and (b) to enhance the formation of DNA-damaging species generated at low concentrations of t-butylhydroperoxide. Rotenone and cyanide, which respectively inhibit complexes I and IV, did not affect DNA damage elicited by t-butylhydroperoxide. These results suggest that DNA single-strand breaks do not mediate the toxicity of t-butylhydroperoxide, and that specific mitochondrial functions might modulate the formation of the toxic and of DNA-damaging species generated by organic hydroperoxides.
机译:消除耗氧量的抗霉素A对U937细胞中叔丁基过氧化氢引起的毒性有轻微(尽管有统计学意义)抑制作用。处理后孵育6小时后观察到保护作用,但24小时后不再明显。出乎意料的是,这些事件与低水平的叔丁基氢过氧化物产生的DNA单链断裂的明显积累有关。发现在用叔丁基氢过氧化物处理期间会同时出现一个氧原子和一个以碳为中心的自由基,并且抗霉素A显着降低了它们的形成。因此,在复合物III的水平抑制电子传输似乎(a)减少了形成至少部分地介导由叔丁基过氧化氢引起的致死作用的有毒物质;和(b)增强低浓度叔丁基过氧化氢产生的DNA破坏性物质的形成。分别抑制复合物I和IV的鱼藤酮和氰化物不影响叔丁基过氧化氢引起的DNA损伤。这些结果表明,DNA单链断裂不会介导叔丁基氢过氧化物的毒性,特定的线粒体功能可能会调节有机氢过氧化物产生的毒性和DNA破坏物种的形成。

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