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Detoxification of Reactive Carbonyl Species by Glutathione Transferase Tau Isozymes

机译:谷胱甘肽转移酶Tau同工酶对活性羰基化合物的解毒作用

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摘要

Oxidative stimuli to living cells results in the formation of lipid peroxides, from which various aldehydes and ketones (oxylipin carbonyls) are inevitably produced. Among the oxylipin carbonyls, those with an α,β-unsaturated bond are designated as reactive carbonyl species (RCS) because they have high electrophilicity and biological activity. Plants have arrays of dehydrogenases and reductases to metabolize a variety of RCS that occur in the cells, but these enzymes are not efficient to scavenge the most toxic RCS (i.e., acrolein) because they have only low affinity. Two glutathione transferase (GST) isozymes belonging to the plant-specific Tau class were recently observed to scavenge acrolein with KM values at a submillimolar level. This suggests that GST could also be involved in the defense system against RCS. We tested the activities of 23 Tau isozymes of Arabidopsis thaliana for five types of RCS, and the results revealed that 11 isozymes recognized either acrolein or 4-hydroxy-(E)-2-nonenal or both as a substrate(s). Such RCS-scavenging activities indicate the potential contribution of GST to RCS scavenging in plants, and they may account for the stress tolerance conferred by several Tau isozymes. RCS are therefore a strong candidate for endogenous substrates of plant GSTs.
机译:对活细胞的氧化刺激导致脂质过氧化物的形成,由此不可避免地产生各种醛和酮(氧代羰基羰基)。在氧代羰基羰基中,具有α,β-不饱和键的那些被称为反应性羰基物种(RCS),因为它们具有高亲电性和生物活性。植物具有一系列脱氢酶和还原酶来代谢细胞中发生的各种RCS,但是这些酶无法有效清除最具毒性的RCS(即丙烯醛),因为它们的亲和力很低。最近观察到,属于植物特异性Tau类的两种谷胱甘肽转移酶(GST)同工酶可以清除亚毫摩尔级的KM值的丙烯醛。这表明商品及服务税也可能参与了针对RCS的防御系统。我们测试了拟南芥中23种Tau同工酶对五种RCS的活性,结果表明11种同工酶将丙烯醛或4-羟基-(E)-2-壬烯醛或两者都识别为底物。此类RCS清除活性表明GST对植物中RCS清除的潜在贡献,并且它们可能解释了几种Tau同工酶赋予的胁迫耐受性。因此,RCS是植物GST内源性底物的强大候选者。

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