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首页> 外文期刊>Antioxidants and redox signalling >Sulfiredoxin protects mice from lipopolysaccharide-induced endotoxic shock.
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Sulfiredoxin protects mice from lipopolysaccharide-induced endotoxic shock.

机译:Sulfiredoxin保护小鼠免受脂多糖诱导的内毒素性休克。

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Peroxiredoxins constitute a major family of cysteine-based peroxide-scavenging enzymes. They carry an intriguing redox switch by undergoing substrate-mediated inactivation via overoxidation of their catalytic cysteine to the sulfinic acid form that is reverted by reduction catalyzed by the sulfinic acid reductase sulfiredoxin (Srx). The biological significance of such inactivation is not understood, nor is the function of Srx1. To address this question, we generated a mouse line with a null deletion of the Srx1-encoding Srxn1 gene. We show here that Srxn1(-/-) mice are perfectly viable and do not suffer from any apparent defects under laboratory conditions, but have an abnormal response to lipopolysaccharide that manifests by increased mortality during endotoxic shock. Microarray-based mRNA profiles show that although the response of Srxn1(-/-) mice to lipopolysaccharide is typical, spanning all spectrum and all pathways of innate immunity, it is delayed by several hours and remains intense when the response of Srxn1(+/+) mice has already dissipated. These data indicate that Srx1 activity protects mice from the lethality of endotoxic shock, adding this enzyme to other host factors, as NRF2 and peroxiredoxin 2, which by regulating cellular reactive oxygen species levels act as important modifiers in the pathogenesis of sepsis.
机译:过氧化物氧还蛋白构成了基于半胱氨​​酸的过氧化物清除酶的主要家族。它们通过催化半胱氨酸过氧化为亚磺酸形式而发生底物介导的失活,从而进行了有趣的氧化还原转换,亚磺酸形式可通过亚磺酸还原酶磺基还原酶(Srx)催化的还原而还原。这种失活的生物学意义还不清楚,Srx1的功能也不清楚。为了解决这个问题,我们生成了一个小鼠行,该行删除了编码Srx1的Srxn1基因。我们在这里显示Srxn1(-/-)小鼠是完全可行的,并且在实验室条件下没有任何明显的缺陷,但是对脂多糖的异常反应表现为内毒素休克期间死亡率增加。基于微阵列的mRNA谱图显示,尽管Srxn1(-/-)小鼠对脂多糖的反应是典型的,跨越先天免疫的所有谱图和所有途径,但它延迟了几个小时,并且当Srxn1(+ / +)老鼠已经消散。这些数据表明,Srx1活性可保护小鼠免受内毒素性休克致死性的影响,并将这种酶添加到其他宿主因子中,如NRF2和过氧化物酶2,它们通过调节细胞活性氧的水平在败血症的发病机理中起重要的调节作用。

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