Literature DB >> 19234057

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

Sonja C Schriever1, Kimberly M Barnes, Jacqueline K Evenson, Anna M Raines, Roger A Sunde.   

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.

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Year:  2009        PMID: 19234057      PMCID: PMC4810777          DOI: 10.3181/0812-RM-369

Source DB:  PubMed          Journal:  Exp Biol Med (Maywood)        ISSN: 1535-3699


  43 in total

1.  Dual function of the selenoprotein PHGPx during sperm maturation.

Authors:  F Ursini; S Heim; M Kiess; M Maiorino; A Roveri; J Wissing; L Flohé
Journal:  Science       Date:  1999-08-27       Impact factor: 47.728

2.  Dietary selenium regulation of glutathione peroxidase mRNA and other selenium-dependent parameters in male rats.

Authors:  Sherri L Weiss; Jacqueline K Evenson; Kevin M Thompson; Roger A Sunde
Journal:  J Nutr Biochem       Date:  1997-02       Impact factor: 6.048

3.  Effect of dietary selenium on erythrocyte and liver glutathione peroxidase in the rat.

Authors:  D G Hafeman; R A Sunde; W G Hoekstra
Journal:  J Nutr       Date:  1974-05       Impact factor: 4.798

4.  Expression of selenoprotein-P messenger ribonucleic acid in the rat testis.

Authors:  M Koga; H Tanaka; K Yomogida; J Tsuchida; K Uchida; M Kitamura; S Sakoda; K Matsumiya; A Okuyama; Y Nishimune
Journal:  Biol Reprod       Date:  1998-01       Impact factor: 4.285

5.  The selenium requirement for glutathione peroxidase mRNA level is half of the selenium requirement for glutathione peroxidase activity in female rats.

Authors:  S L Weiss; J K Evenson; K M Thompson; R A Sunde
Journal:  J Nutr       Date:  1996-09       Impact factor: 4.798

6.  Deletion of selenoprotein P alters distribution of selenium in the mouse.

Authors:  Kristina E Hill; Jiadong Zhou; Wendy J McMahan; Amy K Motley; John F Atkins; Raymond F Gesteland; Raymond F Burk
Journal:  J Biol Chem       Date:  2003-02-06       Impact factor: 5.157

7.  Analysis of the mouse selenoprotein P gene.

Authors:  P Steinert; D Bächner; L Flohé
Journal:  Biol Chem       Date:  1998-06       Impact factor: 3.915

8.  Transcript analysis of the selenoproteome indicates that dietary selenium requirements of rats based on selenium-regulated selenoprotein mRNA levels are uniformly less than those based on glutathione peroxidase activity.

Authors:  Kimberly M Barnes; Jacqueline K Evenson; Anna M Raines; Roger A Sunde
Journal:  J Nutr       Date:  2008-12-23       Impact factor: 4.798

9.  Sequential development of flagellar defects in spermatids and epididymal spermatozoa of selenium-deficient rats.

Authors:  Gary E Olson; Virginia P Winfrey; Kristina E Hill; Raymond F Burk
Journal:  Reproduction       Date:  2004-03       Impact factor: 3.906

10.  Glutathione peroxidase and phospholipid hydroperoxide glutathione peroxidase are differentially regulated in rats by dietary selenium.

Authors:  X G Lei; J K Evenson; K M Thompson; R A Sunde
Journal:  J Nutr       Date:  1995-06       Impact factor: 4.798

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  4 in total

Review 1.  Insights for Setting of Nutrient Requirements, Gleaned by Comparison of Selenium Status Biomarkers in Turkeys and Chickens versus Rats, Mice, and Lambs.

Authors:  Roger A Sunde; Jin-Long Li; Rachel M Taylor
Journal:  Adv Nutr       Date:  2016-11-15       Impact factor: 8.701

Review 2.  Selenium regulation of the selenoprotein and nonselenoprotein transcriptomes in rodents.

Authors:  Roger A Sunde; Anna M Raines
Journal:  Adv Nutr       Date:  2011-03-10       Impact factor: 8.701

Review 3.  Selenoproteins and oxidative stress-induced inflammatory tumorigenesis in the gut.

Authors:  Caitlyn W Barrett; Sarah P Short; Christopher S Williams
Journal:  Cell Mol Life Sci       Date:  2016-08-25       Impact factor: 9.261

Review 4.  Selenoproteins in Tumorigenesis and Cancer Progression.

Authors:  Sarah P Short; Christopher S Williams
Journal:  Adv Cancer Res       Date:  2017       Impact factor: 6.242

  4 in total

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