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在高氧暴露的小鼠肺部,通过 Nrf2 依赖途径诱导硫氧还蛋白和过氧化物酶 III 的超氧化。

Induction of sulfiredoxin via an Nrf2-dependent pathway and hyperoxidation of peroxiredoxin III in the lungs of mice exposed to hyperoxia.

机构信息

Division of Life and Pharmaceutical Sciences, Ewha Womans University, Seoul, Korea.

出版信息

Antioxid Redox Signal. 2009 May;11(5):937-48. doi: 10.1089/ars.2008.2325.

Abstract

The cysteine residue at the active site of peroxiredoxin (Prx) I, Prx II, or Prx III is reversibly hyperoxidized to cysteine sulfinic acid, with concomitant loss of peroxidase activity, during normal catalysis. Sulfiredoxin (Srx) is the enzyme responsible for reversing this hyperoxidation. We now show that the expression of Srx at both the mRNA and protein levels is increased markedly in the lungs of mice exposed to hyperoxia. This hyperoxia-induced expression of Srx was not evident in mice deficient in the transcription factor Nrf2, indicating an essential role for an Nrf2 signaling pathway in this effect. Hyperoxia also elicited the accumulation of the sulfinic form of the mitochondrial enzyme Prx III, but not that of the cytosolic enzymes Prx I or Prx II, in lung tissue. This selective hyperoxidation of Prx III is likely due either to mitochondria being the major site of the hyperoxia-induced production of reactive oxygen species or to the translocation of Srx from the cytosol into mitochondria being rate limiting for the reduction of sulfinic Prx III. Hyperoxia induced the degradation of Prx III in Nrf2-deficient mice but not in wild-type animals, suggesting that, in the absence of a sufficient amount of Srx, sulfinic Prx III is converted to a form that is susceptible to proteolysis.

摘要

过氧化物酶(Prx)I、Prx II 或 Prx III 活性位点的半胱氨酸残基在正常催化过程中可逆地被氧化为半胱氨酸亚磺酸,同时失去过氧化物酶活性。硫氧还蛋白(Srx)是负责逆转这种过氧化的酶。我们现在表明,在暴露于高氧的小鼠的肺部,Srx 的 mRNA 和蛋白质水平表达明显增加。在转录因子 Nrf2 缺乏的小鼠中,这种 Srx 的高氧诱导表达并不明显,表明 Nrf2 信号通路在这种效应中起重要作用。高氧还引起线粒体酶 Prx III 的亚磺酸形式的积累,但不会引起细胞质酶 Prx I 或 Prx II 的积累,在肺组织中。这种选择性的 Prx III 过氧化可能是由于线粒体是高氧诱导的活性氧产生的主要部位,或者是 Srx 从细胞质易位到线粒体对于还原亚磺酸 Prx III 是限速的。高氧诱导 Nrf2 缺陷型小鼠中 Prx III 的降解,但在野生型动物中没有,这表明,在没有足够量的 Srx 的情况下,亚磺酸 Prx III 被转化为易受蛋白水解的形式。

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