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Y. Zhang, P.V. Baranov, J.F. Atkins, V.N. Gladyshev. Pyrrolysine and selenocysteine use dissimilar decoding strategies. „Journal of Biological Chemistry”. 280 (21), s. 20740–20751, 2005. DOI: 10.1074/jbc.M501458200. PMID: 15788401.
Y. Zhang, V.N. Gladyshev. High content of proteins containing 21st and 22nd amino acids, selenocysteine and pyrrolysine, in a symbiotic deltaproteobacterium of gutless worm Olavius algarvensis. „Nucleic Acids Research”. 35 (15), s. 4952–4963, 2007. DOI: 10.1093/nar/gkm514. PMID: 17626042. PMCID: PMC1976440.
G. Srinivasan, C.M. James, J.A. Krzycki. Pyrrolysine encoded by UAG in Archaea: charging of a UAG-decoding specialized tRNA. „Science”. 296 (5572), s. 1459–1462, 2002. DOI: 10.1126/science.1069588. PMID: 12029131.
B. Hao, W. Gong, T.K. Ferguson, C.M. James i inni. A new UAG-encoded residue in the structure of a methanogen methyltransferase. „Science”. 296 (5572), s. 1462–1466, 2002. DOI: 10.1126/science.1069556. PMID: 12029132.