Lei X G, Evenson J K, Thompson K M, Sunde R A
Nutritional Sciences Group, University of Missouri, Columbia, MO 65211, USA.
J Nutr. 1995 Jun;125(6):1438-46. doi: 10.1093/jn/125.6.1438.
Phospholipid hydroperoxide glutathione peroxidase (PHGPX) and classical glutathione peroxidase (GPX1) are encoded by separate genes with only about 40% amino acid and nucleic acid sequence identity. To determine the response of tissue PHGPX expression to dietary Se level and to compare these responses with those for GPX1, weanling male rats were fed amino acid diets containing from 2 (-Se) to 130 (+Se) microgram Se/kg diet or a torula diet containing 5 and 190 micrograms Se/kg diet as Na2SeO3 for 28 d. Tissues were analyzed for PHGPX and GPX1 activity and mRNA. There was no effect of Se on growth. In -Se rats, GPX1 activity was reduced to 1% in liver and 4-9% in heart, kidney and lung compared with +Se rats; PHGPX activity was reduced only to 25-50% in these four tissues. The Se response curves indicated that the dietary Se requirement to reach plateau liver PHGPX activity was half that required for plateau GPX activity. In -Se rats, liver and heart GPX1 mRNA levels were reduced to 6 and 12%, respectively, whereas PHGPX mRNA was not significantly affected by Se deficiency. Notably, 65 micrograms Se/kg diet resulted in plateau liver GPX1 mRNA levels but not plateau GPX activity. Testis had the lowest GPX activity and GPX1 mRNA of all tissues examined, but had 15-fold higher PHGPX activity and 45-fold higher PHGPX mRNA levels when compared with liver. There was no significant effect of dietary Se on testis GPX1 and PHGPX mRNA levels. This study demonstrates that these two selenoperoxidases are differentially regulated by dietary Se.(ABSTRACT TRUNCATED AT 250 WORDS)
磷脂氢过氧化物谷胱甘肽过氧化物酶(PHGPX)和经典谷胱甘肽过氧化物酶(GPX1)由不同基因编码,其氨基酸和核酸序列的同一性仅约为40%。为了确定组织PHGPX表达对膳食硒水平的反应,并将这些反应与GPX1的反应进行比较,给断奶雄性大鼠喂食含2(-硒)至130(+硒)微克硒/千克饲料的氨基酸饲料,或含5和190微克硒/千克饲料(以亚硒酸钠形式)的酵母饲料,持续28天。分析组织中的PHGPX和GPX1活性及mRNA。硒对生长无影响。与+硒大鼠相比,-硒大鼠肝脏中GPX1活性降至1%,心脏、肾脏和肺中降至4 - 9%;这四个组织中的PHGPX活性仅降至25 - 50%。硒反应曲线表明,肝脏PHGPX活性达到平台期所需的膳食硒需求量是GPX活性所需量的一半。在-硒大鼠中,肝脏和心脏中GPX1 mRNA水平分别降至6%和12%,而PHGPX mRNA不受硒缺乏的显著影响。值得注意的是,65微克硒/千克饲料使肝脏GPX1 mRNA水平达到平台期,但GPX活性未达到。在所检查的所有组织中,睾丸的GPX活性和GPX1 mRNA最低,但与肝脏相比,其PHGPX活性高15倍,PHGPX mRNA水平高