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In search of selenoproteins in the world's smallest mammal

-Craseonycteris thonglongyai-


BIBLIOGRAPHY


  1. Araiso Y, Sherrer R, Ishitani R, Ho J, Soll D, Nureki O. Structure of a tRNA-dependent kinase essential for selenocysteine decoding. Proceedings of the National Academy of Sciences. 2009;106(38):16215-16220.

  2. Burton M, Burton R. The International Wildlife Encyclopedia: Volume 3. 2002; Tarrytown, NY: Marshall Cavendish Corporation.

  3. 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.

  4. Database G. SELENOT Gene - GeneCards | SELT Protein | SELT Antibody [Internet]. Genecards.org. 2019 [cited 4 December 2019]. Available from: https://www.genecards.org/cgi-bin/carddisp.pl?gene=SELENOT

  5. Hayssen V, Tienhoven A, Tienhoven A, Asdell S. Asdell's Patterns of Mammalian Reproduction: A Compendium of Species-specific Data. 1993. Ithaca, NY: Comstock Publishing Company.

  6. Hill J, Smith S. Craseonycteris thonglongyai. Mammalian Species. 1981; 160(1): 1-4.

  7. Humphery S, Bain J. Endangered Animals of Thailand. 1990. Gainsville, FL: Sandhill Crane Press.

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

  9. 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.

  10. Kurta A, Kunz T. Size of bats at birth and maternal investment during pregnancy. Symposia of the Zoological Society of London. 1987; 57(1): 79-106.

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

  12. Margis R, Dunand C, Teixeira F, Margis-Pinheiro M. Glutathione peroxidase family - an evolutionary overview. FEBS Journal. 2008;275(15):3959-3970.

  13. 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.

  14. Mustacich D, Powis G. Thioredoxin reductase. Biochemical Journal. 2000; 346(Pt1):1-8.

  15. Nowak R. Walker's Mammals of the World Volume 2. 1999. Baltimore, MD: The Johns Hopkins University Press

  16. Oudouhou F, Casu B, Dopgwa Puemi A, Sygusch J, Baron C. Analysis of Novel Interactions between Components of the Selenocysteine Biosynthesis Pathway, SEPHS1, SEPHS2, SEPSECS, and SECp43. Biochemistry. 2017;56(17):2261-2270.

  17. Rayman M. The importance of selenium to human health. The Lancet. 2000;356(9225):233-241.

  18. Seiderer J, Dambacher J, Kühnlein B, Pfennig S, Konrad A, Török H et al. The role of the selenoprotein S (SELS) gene ?105G>A promoter polymorphism in inflammatory bowel disease and regulation of SELS gene expression in intestinal inflammation. Tissue Antigens. 2007;70(3):238-246.

  19. SELENOW selenoprotein W [Homo sapiens (human)] - Gene - NCBI [Internet]. Ncbi.nlm.nih.gov. 2019 [cited 4 December 2019]. Available from: https://www.ncbi.nlm.nih.gov/gene/6415

  20. Toppo S, Vanin S, Bosello V, Tosatto S. Evolutionary and Structural Insights Into the Multifaceted Glutathione Peroxidase (Gpx) Superfamily. Antioxidants & Redox Signaling. 2008;10(9):1501-1514.

  21. Turanov A, Lobanov A, Hatfield D, Gladyshev V. UGA codon position-dependent incorporation of selenocysteine into mammalian selenoproteins. Nucleic Acids Research. 2013;41(14):6952-6959.

  22. Valverde-R C, Orozco A, Carlos Solís-S J, Robles-Osorio L. Iodothyronine Deiodinases. Cellular Endocrinology in Health and Disease. 2014;365-377.

  23. Vindry C, Ohlmann T, Chavatte L. Translation regulation of mammalian selenoproteins. Biochimica et Biophysica Acta (BBA) - General Subjects. 2018;1862(11):2480-2492.

  24. Ward A. Pocket Factfiles; Endangered Animals. 2004. Toronto, Ontario, Canada: Andromeda Oxford Limited.

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