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在大鼠睾丸中,谷胱甘肽过氧化物酶-1信使核糖核酸对硒的需求高于该酶的活性。

Selenium requirements are higher for glutathione peroxidase-1 mRNA than gpx1 activity in rat testis.

作者信息

Schriever Sonja C, Barnes Kimberly M, Evenson Jacqueline K, Raines Anna M, Sunde Roger A

机构信息

Department of Nutritional Sciences, University of Wisconsin, 1415 Linden Drive, Madison, WI 53706, USA.

出版信息

Exp Biol Med (Maywood). 2009 May;234(5):513-21. doi: 10.3181/0812-RM-369. Epub 2009 Feb 20.

Abstract

Selenium (Se) plays a critical role in testis, sperm, and reproduction, and testis Se levels are remarkably maintained in Se deficiency. In most other tissues, Se levels decrease dramatically as do levels of most selenoproteins and levels of a subset of Se-regulated selenoprotein mRNAs. Because of the recent identification of key molecules in the targeted trafficking of Se to the testis, we examined the hierarchy of Se regulation in testis by determining the dietary Se regulation of the full testis selenoproteome in rats fed graded levels of Se (0 to 0.8 microg Se/g) as Na2SeO3 for 28 d. Se status did not significantly affect testis weight or glutathione peroxidase 4 (Gpx4) activity (P>0.05). qRT-PCR analysis of selenoprotein mRNA expression revealed that 21 of the 24 selenoprotein mRNAs and ApoER2 mRNA (the selenoprotein P [Sepp1] receptor) were also not regulated significantly by dietary Se status. In contrast, Gpx1 activity decreased to 28% of Se-adequate levels, and mRNA levels for Gpx1, Sepp1, and Sepw1 (selenoprotein W) decreased significantly in Se-deficient rats to 45, 46, and 55%, respectively, of Se-adequate plateau levels. Overlap of hyperbolic Gpx4 activity and Sepw1 mRNA response curves with testis Se concentration, all with minimum dietary Se requirements<0.016 microg Se/g, showed the priority for synthesis of Gpx4. Higher minimum dietary Se requirements of 0.04 microg Se/g for Gpx1 activity and Sepp1 mRNA, and the even higher minimum dietary Se requirement of 0.08 microg Se/g for Gpx1 mRNA, suggest that the hierarchy of these biomarkers reflects distinct, lower priority pools, cell types, and roles for Se within the testis.

摘要

硒(Se)在睾丸、精子和生殖过程中发挥着关键作用,并且在硒缺乏的情况下,睾丸中的硒水平能得到显著维持。在大多数其他组织中,硒水平会随着大多数硒蛋白水平以及一部分受硒调节的硒蛋白mRNA水平的下降而急剧降低。由于最近发现了将硒靶向运输到睾丸的关键分子,我们通过测定以亚硒酸钠(Na2SeO3)为硒源、摄入不同水平硒(0至0.8微克硒/克)的大鼠全睾丸硒蛋白组的膳食硒调节情况,来研究睾丸中硒调节的层级关系。硒状态对睾丸重量或谷胱甘肽过氧化物酶4(Gpx4)活性没有显著影响(P>0.05)。对硒蛋白mRNA表达的qRT-PCR分析表明,24种硒蛋白mRNA中的21种以及载脂蛋白E受体2 mRNA(硒蛋白P [Sepp1]受体)也不受膳食硒状态的显著调节。相比之下,Gpx1活性降至硒充足水平的28%,并且在缺硒大鼠中,Gpx1、Sepp1和Sepw1(硒蛋白W)的mRNA水平分别显著降至硒充足平台水平的45%、46%和55%。双曲线型的Gpx4活性和Sepw1 mRNA反应曲线与睾丸硒浓度的重叠,且所有曲线的最低膳食硒需求均<0.016微克硒/克,表明了Gpx4合成的优先性。Gpx1活性和Sepp1 mRNA的最低膳食硒需求较高,为0.04微克硒/克,而Gpx1 mRNA的最低膳食硒需求甚至更高,为0.08微克硒/克,这表明这些生物标志物的层级关系反映了睾丸内硒的不同、优先级较低的储备、细胞类型和作用。

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