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首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Effects of gpx4 haploid insufficiency on GPx4 activity, selenium concentration, and paraquat-induced protein oxidation in murine tissues.
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Effects of gpx4 haploid insufficiency on GPx4 activity, selenium concentration, and paraquat-induced protein oxidation in murine tissues.

机译:gpx4单倍体功能不足对小鼠组织中GPx4活性,硒浓度和百草枯诱导的蛋白质氧化的影响。

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Selenium-dependent glutathione peroxidase-4 (GPx4) catalyzes the reduction of phospholipid hydroperoxides. Because a full gpx4 knockout is embryonic lethal, we examined the effect of deletion of one copy of gpx4 on the activities of three selenoperoxidases (GPx1, GPx3, and GPx4), selenium concentrations, and pro-oxidant-induced protein oxidation in various tissues of mice. A total of 32 gpx4 hemizygous (GPx4+/-) and wild-type (WT) mice (8- to 10-weeks old; 16 males and 16 females) were fed a selenium-adequate diet and given an intraperitoneal injection of paraquat (PQ; 24 mg/kg body wt) or phosphate-buffered saline (PBS). All mice were euthanized 4 hrs after injection to collect tissues for analyses. In PBS-treated mice, GPx4 activities in lung, liver, kidney, and testes of GPx4+/- mice were 24-39% lower (P < 0.05) than in WT mice. Among PQ-treated mice, only testis GPx4 activity in GPx4+/- mice was significantly lower (54% P < 0.05) than WT mice. Selenium concentration in testes, but not in other tissues, was reduced (34% P < 0.05) in GPx4+/- mice compared with WT mice, irrespective of treatment. Tissue GPx1 activities and plasma GPx3 and alanine aminotransferase (ALT) activities were unaffected by PQ treatment or gpx4 hemizygosity. Total protein carbonyl was elevated (73% P < 0.05) by PQ only in lung, and this effect of PQ was independent of genotypes. In conclusion, gpx4 haploid insufficiency reduced GPx4 activities and/or selenium concentrations, but had no effect on pro-oxidant-induced protein oxidation in various tissues of mice.
机译:硒依赖性谷胱甘肽过氧化物酶4(GPx4)催化磷脂氢过氧化物的还原。因为完整的gpx4敲除对胚胎致死,所以我们研究了删除一个gpx4拷贝对三种硒过氧化物酶(GPx1,GPx3和GPx4)的活性,硒浓度和促氧化剂诱导的各种组织蛋白氧化的影响。老鼠。总共给32 gpx4半合子(GPx4 +/-)和野生型(WT)小鼠(8至10周龄;雄性16例,雌性16例)饲喂了硒充足的饮食,并进行了腹腔注射百草枯(PQ) ; 24 mg / kg体重)或磷酸盐缓冲液(PBS)。注射后4小时对所有小鼠实施安乐死以收集组织用于分析。在PBS处理的小鼠中,GPx4 +/-小鼠在肺,肝,肾和睾丸中的GPx4活性比WT小鼠低24-39%(P <0.05)。在PQ处理的小鼠中,只有GPx4 +/-小鼠的睾丸GPx4活性显着低于WT小鼠(54%P <0.05)。与野生型小鼠相比,GPx4 +/-小鼠的睾丸中硒浓度降低,但其他组织中硒浓度未降低(34%P <0.05)。组织GPx1活性以及血浆GPx3和丙氨酸氨基转移酶(ALT)活性不受PQ处理或gpx4半合子性的影响。总蛋白羰基仅在肺中被PQ升高(73%P <0.05),并且PQ的这种作用与基因型无关。总之,gpx4单倍体功能不足降低了GPx4活性和/或硒浓度,但对小鼠多种组织中由氧化剂诱导的蛋白质氧化没有影响。

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