Selenoproteïnes en Eptesicus fuscus
Cebrián M.C, Franco M, Gallardo P, Gallego E.
REFERÈNCIES
- Allmang C, Krol A. Selenoprotein synthesis: UGA does not end the story. Biochimie. 2006; 88(11): 1561-71.
- Arnér ES. Selenoproteins – What unique properties can arise with selenocysteine in place of cysteine? Exp Cell Res. 2010; 316(8):1296-303.
- Brown KM, Arthur JR. Selenium, selenoproteins and human health: a review. Public Health Nutr. 200; 4(2B):593-9.
- Castellano S. On the unique function of selenocysteine - insights from the evolution of selenoproteins. Biochim Biophys Acta. 2009; 1790(11): 1463-70.
- Donovan J, Copeland PR. Evolutionary history of selenocysteine incorporation from the perspective of SECIS binding proteins. BMC Evol Biol. 2009; 9:229.
- Dudkiewickz M, Szczepinska T, Grynberg M, Pawlowski K. A Novel Protein Kinase-Lilke Domain in a Selenoprotein, Widespread in the Tree of Life. PLoS One. 2012; 7(2).
- Gonzalez-Flores JN, Gupta N, DeMong LW, Copeland PR. The selenocysteine-specific elongation factor contains a novel and multi-functional domain. J Biol Chem. 2012; 287(46):38936-45.
- Mariotti M, Ridge PG, Zhang Y, Lobanov AV, Pringle TH, Guigo R, Hatfield DL, Gladyshev VM. Compostiion and Evolution of the Vertebrate and Mammalian Selenoproteomes. PLoS one. 2012; 7(3).
- Mariotti M, Lobanov AV, Guigo R, Gladyshev VN. SECISearch3 and Seblastian: new tools for prediction of SECIS elements and selenoproteins. Nucleic Acids Res. 2013; 41.
- Mulheisen, M. and K. Berry 2000. "Eptesicus fuscus" (On-line), Animal Diversity Web. Accessed December 03, 2013 at http://animaldiversity.ummz.umich.edu/accounts/Eptesicus_fuscus/
- Nasim MT, Jaenecke S, Belduz A, Kollmus H, Flohé L, McCarthy JE. Eukaryotic selenocysteine incorporation follows a nonprocessive mechanism that competes with translational termination. J Biol Chem. 2000; 275(20):14846-52.
- Schomburg L, Schweizer U, Köhrle J. Selenium and selenoproteins in mammals: extraordinary, essential, enigmatic. Cell Mol Life Sci. 2004; 61(16):1988-95.
- Papp LV, Lu J, Holmgren A, Khanna KK. From selenium to selenoproteins: synthesis, identity, and their role in human health. Antioxid Redox Signal. 2007; 9(7):775-806.
- Reeves MA, Hoffman PR. The human selenoproteome: recent insights into functions and regulation. Cell Mol Life Sci. 2009; 66: 2457-2478.
- Schomburg L, Schweizer U, Köhrle J. Selenium and selenoproteins in mammals: extraordinary, essential, enigmatic. Cell Mol Life Sci. 2004; 61(16):1988-95.
- Taly JF, Magis C, Bussotti G, Chang JM, Di Tommaso P, Erb I, Espinosa-Carrasco J, Kemena C, Notredame CUsing the T-Coffee package to build multiple sequence alignments of protein, RNA, DNA sequences and 3D structures. Nat Protoc. 2011; 6(11):1669-82.
- Taxonomy Browser [base de dades a Internet] NCBI: [accés 20 de Novembre del 2013]. Eptesicus fuscus. Disponible a: http://www.ncbi.nlm.nih.gov/Taxonomy/Browser/wwwtax.cgi?id=29078
- Tinggi U. Selenium: its role as antioxidant in human health. Environ Health Prev Med. 2008; 13(2): 102-8.
- Torres JW, Guevara LM. Perspectivas sobre el origen y la filogenia de los murciélagos. ContactoS. 2010; 77: 5-9.
- Vonhof MJ, Davis CS, Fenton MB, Strobeck C. Characterization of dinucleotide microsatellite loci in big brown bats (Eptesicus fuscus), and their use in other North American vespertilionid bats. Molecular Ecology Notes; 2002: 2: 167–169
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