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Proceedings of the National Academy of Sciences of the United States of America|February 1, 1991
Sequence determination and modeling of structural motifs for the smallest monomeric aminoacyl-tRNA synthetaseY M Hou, K Shiba, C Mottes, et al.Biochemistry|June 24, 1998
Strong selective pressure to use G:U to mark an RNA acceptor stem for alanineJ W Chihade, K Hayashibara, K Shiba, et al.Proceedings of the National Academy of Sciences of the United States of America|December 10, 1996
Dominant negative inhibition by fragments of a monomeric enzymeJ E Michaels, P Schimmel, K Shiba, et al.Cell|December 1, 1982
Nucleotide sequence of yeast LEU2 shows 5'-noncoding region has sequences cognate to leucineA Andreadis, Y P Hsu, G B Kohlhaw, et al.Proceedings of the National Academy of Sciences of the United States of America|April 1, 1985
Two tissue-specific isozymes of creatine kinase have closely matched amino acid sequencesL Pickering, H Pang, K Biemann, et al.Biochemistry|December 7, 1993
C-terminal peptide appendix in a class I tRNA synthetase needed for acceptor-helix contacts and microhelix aminoacylationS Kim, J A Landro, A J Gale, et al.The Journal of Biological Chemistry|November 10, 1982
Gene for Escherichia coli glycyl-tRNA synthetase has tandem subunit coding regions in the same reading frameT Keng, T A Webster, R T Sauer, et al.Proceedings of the National Academy of Sciences of the United States of America|September 18, 1997
Specific atomic groups and RNA helix geometry in acceptor stem recognition by a tRNA synthetaseP J Beuning, F Yang, P Schimmel, et al.Proceedings of the National Academy of Sciences of the United States of America|January 9, 1996
Evidence that two present-day components needed for the genetic code appeared after nucleated cells separated from eubacteriaL Ribas de Pouplana, M Frugier, C L Quinn, et al.The Journal of Biological Chemistry|July 10, 1984
Yeast LEU2. Repression of mRNA levels by leucine and primary structure of the gene productA Andreadis, Y P Hsu, M Hermodson, et al.Pageof 328