1. Reich H, Hondal R. Why Nature Chose Selenium. ACS Chemical Biology. 2016; 11 (4): 821-841.

2. Labunskyy VM, Hatfield DL, Gladyshev VN. Selenoproteins: molecular pathways and physiological roles. Physiol Rev. 2014; 94 (3): 739-777.

3. Mousa R, Notis Dardashti R, Metanis N. Selenium and Selenocysteine in Protein Chemistry. Angewandte Chemie International Edition.2017.

4. Xu XM, Turanov AA, Carlson BA, Yoo MH, Everley RA, Nandakumar R, et al. Targeted insertion of cysteine by decoding UGA codons with mammalian selenocysteine machinery. Proc Natl Acad Sci USA. 2010; 107 (50): 21430–21434.

5. Bellinger FP, Raman AV, Reeves MA, Berry MJ. Regulation and function of selenoproteins in human disease. Biochem J. 2009; 422 (1): 11-22.

6. Jameson RR, Diamond AM. A regulatory role for Sec tRNA[Ser]Sec in selenoprotein synthesis. RNA. 2004; 10 (7): 1142-1152.

7. Copeland P, Fletcher J, Carlson B, Hatfield D, Driscoll D. A novel RNA binding protein, SBP2, is required for the translation of mammalian selenoprotein mRNAs. The EMBO Journal. 2000; 19 (2): 306-314.

8. Squires J, Berry M. Eukaryotic selenoprotein synthesis: Mechanistic insight incorporating new factors and new functions for old factors. IUBMB Life. 2008; 60 (4): 232-235.

9. Lorin T, Brunet FG, Laudet V, Volff JN. Teleost fish-specific preferential retention of pigmentation gene-containing families after whole genome duplications in vertebrates. G3 - Genes Genom Genet. 2018; 8 (5): 1795-1806.

10. Papp LV, Lu J, Holmgren A, Khanna KK. From Selenium to Selenoproteins: Synthesis, Identity, and Their Role in Hu-man Health. Antioxid Redox Signal. 2007; 9 (7): 775–806.

11. Ferguson A, Labunskyy V, Fomenko D, Araç D, Chelliah Y, Amezcua C, et al. NMR Structures of the Selenoproteins Sep15 and SelM Reveal Redox Activity of a New Thioredoxin-like Family. J Biol Chem. 2005; 281 (6): 3536-3543.

12.Sciencedirect.com [Internet]. Selenoproteins - an overview. ELSEVIER; 2018 [citat Novembre 2018]. Disponible a: https://www.sciencedirect.com/topics/biochemistry-genetics-and-molecular-biology/selenoproteins [Consultat 1 Dec. 2018].

13. Uniprot.org [Internet]. SELENOI - Selenprotein I - Homo sapiens (Human) - SELI gene & protein. Uniprot. 2017 [citat Novembre 2018]. Disponible a: https://www.uniprot.org/uniprot/C9J9I1.

14. Castellano S, Lobanov AV, Chapple C, Novoselov SV, Albrecht M, Hua D, et al. Diversity and functional plasticity of eukaryotic selenoproteins: identification and characterization of the SelJ family. Proc Natl Acad Sci USA. 2005; 102 (45): 16188-16193.

15. Shchedrina V, Everley R, Zhang Y, Gygi S, Hatfield D, Gladyshev V. Selenoprotein K Binds Multiprotein Complexes and Is Involved in the Regulation of Endoplasmic Reticulum Homeostasis. J Biol Chem. 2011; 286 (50): 42937-42948.

16. Labunskyy V, Hatfield D, Gladyshev V. Selenoproteins: Molecular Pathways and Physiological Roles. Physiol Rev. 2014; 94 (3): 739-777.

17. Jiang L, Ni J, Liu Q. Evolution of selenoproteins in the metazoan. BMC Genomics. 2012; 13: 446.

18. Database G [Internet]. MSRA Gene - GeneCards | MSRA Protein | MSRA Antibody. Genecards.org. 2017 [citat Novembre 2017]. Disponible a: http://www.genecards.org/cgi-bin/carddisp.pl?gene=MSRA&keywords=MsrA.

19. Mustafa ME, Antar HA. Bioinformatics approach to characterize mammalian selenoprotein T. Biochem Genet. 2012. 50; 10: 736–747.

20. SELENOH - Selenprotein H - Homo sapiens (Human) - SELENOH gene & protein [Internet]. Uniprot.org. 2017 [citat Novembre 2018]. Disponible a: https://www.uniprot.org/uniprot/F1Q7W2.

21. Xu X, Mix H, Carlson B, Grabowski P, Gladyshev V, Berry M, et al. Evidence for Direct Roles of Two Additional Factors, SECp43 and Soluble Liver Antigen, in the Selenoprotein Synthesis Machinery. J Biol Chem. 2005; 280 (50):41568-41575.

22. EEFSEC - Selenocysteine-specific elongation factor - Homo sapiens (Human) - eEFSec gene & protein [Internet]. Uniprot.org. 2017 [citat Novembre 2018]. Disponible a: http://www.uniprot.org/uniprot/P57772.

23. Xu X, Carlson B, Irons R, Mix H, Zhong N, Gladyshev V, et al. Selenophosphate synthetase 2 is essential for selenoprotein biosynthesis. Biochem J. 2007; 404 (1): 115-120.

24. Ganichkin O, Xu X, Carlson B, Mix H, Hatfield D, Gladyshev V, et al. Structure and Catalytic Mechanism of Eukaryotic Selenocysteine Synthase. J Biol Chem. 2007; 283 (9):5849-5865.

25. ITIS Standard Report Page: Xiphophorus hellerii [Internet]. Itis.gov. 2018 (citat Novembre 2018). Disponible a: https://www.itis.gov/servlet/SingleRpt/SingleRpt?search_topic=TSN&search_value=647013#null

26. Xiphophorus hellerii summary page [Internet]. FishBase. 2018 (citat Novembre 2018). Disponible: http://fishbase.se/summary/Xiphophorus-hellerii.html

27. Green Swordtail (Xiphophorus hellerii) - Species Profile [Internet]. Nas.er.usgs.gov. 2018 (citat Novembre 2018). Disponible a: https://nas.er.usgs.gov/queries/FactSheet.aspx?SpeciesID=869