Cheng W H, Combs G F, Lei X G
Department of Animal Science, Cornell University, Ithaca, NY 14853, USA.
Biofactors. 1998;7(4):311-21. doi: 10.1002/biof.5520070403.
This study was to determine whether or not effects of the cellular glutathione peroxidase (GPX1) knockout on several Se-dependent parameters in mice were tissue, dietary Se concentration, and selenoprotein specific. A 2 x 3 factorial experiment was conducted with 18 GPX1 knockout mice [GPX1(-)] and 18 controls (3 weeks old, half males and females). These mice were fed a torula yeast diet supplemented with all-rac-alpha-tocopheryl acetate (50 mg/kg of feed) and Se (sodium selenite) at 0, 0.5, or 3.0 mg/kg of feed for 6 weeks. Both kidney GPX1 mRNA levels and liver, kidney, lung, and testis total GPX activities, assayed using hydrogen peroxide, were affected (p < 0.001) by the GPX1 knockout and dietary Se concentrations, whereas kidney extracellular or plasma GPX (GPX3) mRNA levels and phospholipid hydroperoxide GPX (GPX4) activities in the four tissues were affected (p < 0.001) by only dietary Se concentrations. Total GPX activity in testis was reduced approximately 90% (p < 0.01) by the GPX1 knockout. Neither the GPX1 knockout nor the dietary Se concentrations affected mRNA levels of GPX4 in testis or selenoprotein P in kidney. Total liver Se concentrations were not different between the GPX1(-) and control mice at 0 mg Se/kg of feed, but were reduced (p < 0.01) by 61 and 64% in the GPX1(-) mice at 0.5 and 3.0 mg Se/kg of feed, respectively. These results not only confirm the independent expression of GPX3, GPX4, and selenoprotein P from that of GPX1, but also show similar effects of the GPX1 knockout on Se-dependent parameters in mice between different dietary Se concentrations, tissues, and selenoproteins.
本研究旨在确定细胞谷胱甘肽过氧化物酶(GPX1)基因敲除对小鼠几种硒依赖性参数的影响是否具有组织特异性、受膳食硒浓度影响以及是否具有硒蛋白特异性。对18只GPX1基因敲除小鼠[GPX1(-)]和18只对照小鼠(3周龄,雌雄各半)进行了2×3析因实验。这些小鼠喂食添加了全反式α-生育酚醋酸酯(50毫克/千克饲料)和硒(亚硒酸钠)的圆酵母饲料,硒含量分别为0、0.5或3.0毫克/千克饲料,持续6周。使用过氧化氢检测发现,GPX1基因敲除和膳食硒浓度均影响肾脏GPX1 mRNA水平以及肝脏、肾脏、肺和睾丸的总GPX活性(p<0.001),而仅膳食硒浓度影响四个组织中的肾脏细胞外或血浆GPX(GPX3)mRNA水平和磷脂氢过氧化物GPX(GPX4)活性(p<0.001)。GPX1基因敲除使睾丸中的总GPX活性降低了约90%(p<0.01)。GPX1基因敲除和膳食硒浓度均未影响睾丸中GPX4或肾脏中硒蛋白P的mRNA水平。在饲料硒含量为0毫克/千克时,GPX1(-)小鼠和对照小鼠的肝脏总硒浓度无差异,但在饲料硒含量为0.5和3.0毫克/千克时,GPX1(-)小鼠的肝脏总硒浓度分别降低了61%和64%(p<0.01)。这些结果不仅证实了GPX3、GPX4和硒蛋白P的表达独立于GPX1,还表明在不同膳食硒浓度、组织和硒蛋白之间,GPX1基因敲除对小鼠硒依赖性参数具有相似的影响。