Selenoproteins in Nannopterum harrisi



(1) Allmang C, Krol A. Selenoprotein synthesis: UGA does not end the story. Biochimie. 2006;88(11):1561-1571.

(2) Brown K, Arthur J. Selenium, selenoproteins and human health: a review. Public Health Nutrition. 2001;4(2b): 593-599.

(3) Papp L, Lu J, Holmgren A, Khanna K. From Selenium to Selenoproteins: Synthesis, Identity, and Their Role in Human Health. Antioxidants & Redox Signaling. 2007;9(7):775-806.

(4) Burk RF1, Hill KE, Motley AK. Selenoprotein Metabolism and Function: Evidence. J Nutr. 2003;133(5 Suppl 1):1517-20.

(5) Commans S, Böck A. Selenocysteine inserting tRNAs: an overview. FEMS Microbiol Rev. 1999;23(3):335-351.

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

(7) Lu J, Holmgren A. Selenoproteins. J Biol Chem. 2009;284(2):723-727.

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

(9) Mix H, Lobanov AV, Gladyshev VN. SECIS elements in the coding regions of selenoprotein transcripts are functional in higher eukaryotes. 2007;35(2):414-423.

(10) Kasaikina M, Fomenko D, Labunskyy V, Lachke S, Qiu W, Moncaster J et al. Roles of the 15-kDa Selenoprotein (Sep15) in Redox Homeostasis and Cataract Development Revealed by the Analysis of Sep 15 Knockout Mice. Journal of Biological Chemistry. 2011;286(38):33203-33212.

(11) Mariotti M, Ridge P, Zhang Y, Lobanov A, Pringle T, Guigo R et al. Composition and Evolution of the Vertebrate and Mammalian Selenoproteomes. PLoS ONE. 2012;7(3):e33066.

(12) Bhabak K, Mugesh G. Functional Mimics of Glutathione Peroxidase: Bioinspired Synthetic Antioxidants. Accounts of Chemical Research. 2010;43(11):1408-1419.

(13) Home - Gene - NCBI [Internet]. Ncbi.nlm.nih.gov. 2017 [cited 1 December 2017]. Available from: https://www.ncbi.nlm.nih.gov/gene/

(14) Yan J, Fei Y, Han Y, Lu S. Selenoprotein O deficiencies suppress chondrogenic differentiation of ATDC5 cells. Cell Biology International. 2016;40(10):1033-1040.

(15) HOLBEN D, SMITH A. The Diverse Role of Selenium within Selenoproteins. Journal of the American Dietetic Association. 1999;99(7):836-843.

(16) Kryukov G, Kumar R, Koc A, Sun Z, Gladyshev V. Selenoprotein R is a zinc-containing stereo-specific methionine sulfoxide reductase. Proceedings of the National Academy of Sciences. 2002;99(7):4245-4250.

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

(18) Chiba S, Itoh Y, Sekine S, Yokoyama S. Structural Basis for the Major Role of O-Phosphoseryl-tRNA Kinase in the UGA-Specific Encoding of Selenocysteine. Molecular Cell. 2010;39(3):410-420.

(19) Kennedy M, Valle C, Spencer H. The phylogenetic position of the Galápagos Cormorant. Molecular Phylogenetics and Evolution. 2009;53(1):94-98.

(20) DUFFIE C, GLENN T, VARGAS F, PARKER P. Genetic structure within and between island populations of the flightless cormorant (Phalacrocorax harrisi). Molecular Ecology. 2009;18(10):2103-2111.

(21) Galapagos Flightless Cormorant - Phalacrocorax harrisi - Details - Encyclopedia of Life [Internet]. Encyclopedia of Life. 2017 [cited 29 November 2017]. Available from: http://www.eol.org/pages/1049428/details

(22) Wilson R, Vargas F, Steinfurth A, Riordan P, Ropert-Coudert Y, Macdonald D. WHAT GROUNDS SOME BIRDS FOR LIFE? MOVEMENT AND DIVING IN THE SEXUALLY DIMORPHIC GALÁPAGOS CORMORANT. Ecological Monographs. 2008;78(4):633-652.

(23) TINDLE R. The evolution of breeding strategies in the flightless cormorant (Nannopterum harrisi) of the Galapagos. Biological Journal of the Linnean Society. 1984;21(1-2):157-164.

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

(25) Mariotti M, Ridge P, Zhang Y, Lobanov A, Pringle T, Guigo R et al. Composition and Evolution of the Vertebrate and Mammalian Selenoproteomes. PLoS ONE. 2012;7(3):e33066.

(26) Jiang L, Ni J, Liu Q. Evolution of selenoproteins in the metazoan. BMC Genomics. 2012;13(1):446.