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Zhang Y, Zhou Y, Schweizer U, et al. 
Comparative analysis of selenocysteine machinery and selenoproteome gene expression in mouse brain identifies neurons as key functional sites of selenium in mammals. [JOURNAL ARTICLE]
J Biol Chem 2007 Nov 21.
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Kryukov GV, Gladyshev VN 
Selenium metabolism in zebrafish: multiplicity of selenoprotein genes and expression of a protein containing 17 selenocysteine residues. [Journal Article]
Genes Cells 2000 Dec; 5(12):1049-60.
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Hoffmann PR, Höge SC, Li PA, et al. 
The selenoproteome exhibits widely varying, tissue-specific dependence on selenoprotein P for selenium supply. [JOURNAL ARTICLE]
Nucleic Acids Res 2007 Jun 6.
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Martin-Romero FJ, Kryukov GV, Lobanov AV, et al. 
Selenium metabolism in Drosophila: selenoproteins, selenoprotein mRNA expression, fertility, and mortality. [Journal Article]
J Biol Chem 2001 Aug 10; 276(32):29798-804.
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Chen J, Berry MJ 
Selenium and selenoproteins in the brain and brain diseases. [Journal Article, Review]
J Neurochem 2003 Jul; 86(1):1-12.
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Zhang Y, Romero H, Salinas G, et al. 
Dynamic evolution of selenocysteine utilization in bacteria: a balance between selenoprotein loss and evolution of selenocysteine from redox-active cysteine residues. [JOURNAL ARTICLE]
Genome Biol 2006 Oct 20; 7(10):R94.
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Arnér ES, Sarioglu H, Lottspeich F, et al. 
High-level expression in Escherichia coli of selenocysteine-containing rat thioredoxin reductase utilizing gene fusions with engineered bacterial-type SECIS elements and co-expression with the selA, selB and selC genes. [Journal Article]
J Mol Biol 1999 Oct 8; 292(5):1003-16.
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Lobanov AV, Hatfield DL, Gladyshev VN 
Reduced reliance on the trace element selenium during evolution of mammals. [JOURNAL ARTICLE]
Genome Biol 2008 Mar 31; 9(3):R62.
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Kumaraswamy E, Malykh A, Korotkov KV, et al. 
Structure-expression relationships of the 15-kDa selenoprotein gene. Possible role of the protein in cancer etiology. [Journal Article]
J Biol Chem 2000 Nov 10; 275(45):35540-7.
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