Aminoacyl-tRNA synthetases database
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Maciej Szymanski | Jan Barciszewski | Marzanna A. Deniziak | J. Barciszewski | M. Szymanski | M. Deniziak
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[5] Gary J. Olsen,et al. Aminoacyl-tRNA Synthetases, the Genetic Code, and the Evolutionary Process , 2000, Microbiology and Molecular Biology Reviews.
[6] J. Perona,et al. Influence of transfer RNA tertiary structure on aminoacylation efficiency by glutaminyl and cysteinyl-tRNA synthetases. , 2000, Journal of molecular biology.
[7] W. Doolittle,et al. Root of the universal tree of life based on ancient aminoacyl-tRNA synthetase gene duplications. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[8] B. Lorber,et al. The free yeast aspartyl-tRNA synthetase differs from the tRNA(Asp)-complexed enzyme by structural changes in the catalytic site, hinge region, and anticodon-binding domain. , 2000, Journal of molecular biology.
[9] D. Söll,et al. One polypeptide with two aminoacyl-tRNA synthetase activities. , 2000, Science.
[10] M P Deutscher,et al. Active Aminoacyl-tRNA Synthetases Are Present in Nuclei as a High Molecular Weight Multienzyme Complex* , 2000, The Journal of Biological Chemistry.
[11] L. Ribas de Pouplana,et al. Footprints of aminoacyl-tRNA synthetases are everywhere. , 2000, Trends in biochemical sciences.
[12] J. Warrington,et al. The Cytokine Portion of p43 Occupies a Central Position within the Eukaryotic Multisynthetase Complex* , 2000, The Journal of Biological Chemistry.
[13] A Dietrich,et al. A single gene of chloroplast origin codes for mitochondrial and chloroplastic methionyl-tRNA synthetase in Arabidopsis thaliana. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
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[15] K. Sowers,et al. Synthesis of cysteinyl-tRNA(Cys) by a genome that lacks the normal cysteine-tRNA synthetase. , 2000, Biochemistry.
[16] K. Akashi,et al. Potential dual targeting of an Arabidopsis archaebacterial‐like histidyl‐tRNA synthetase to mitochondria and chloroplasts 1 , 1998, FEBS letters.
[17] A. Hopper. Nuclear Functions Charge Ahead , 1998, Science.
[18] M. Mirande,et al. A recurrent RNA‐binding domain is appended to eukaryotic aminoacyl‐tRNA synthetases , 2000, The EMBO journal.
[19] E V Koonin,et al. Evolution of aminoacyl-tRNA synthetases--analysis of unique domain architectures and phylogenetic trees reveals a complex history of horizontal gene transfer events. , 1999, Genome research.
[20] Y. Diaz-Lazcoz,et al. Evolution of genes, evolution of species: the case of aminoacyl-tRNA synthetases. , 1998, Molecular biology and evolution.
[21] H. Jakubowski. Translational Incorporation of S-Nitrosohomocysteine into Protein* , 2000, The Journal of Biological Chemistry.
[22] D. Söll,et al. The adaptor hypothesis revisited. , 2000, Trends in biochemical sciences.
[23] K. Musier-Forsyth,et al. Transfer RNA recognition by aminoacyl‐tRNA synthetases , 1999, Biopolymers.
[24] E. Lund,et al. Proofreading and aminoacylation of tRNAs before export from the nucleus. , 1998, Science.
[25] D. Söll,et al. Sequence Divergence of Seryl-tRNA Synthetases in Archaea , 1998, Journal of bacteriology.
[26] M. Mirande,et al. The p43 Component of the Mammalian Multi-synthetase Complex Is Likely To Be the Precursor of the Endothelial Monocyte-activating Polypeptide II Cytokine* , 1997, The Journal of Biological Chemistry.
[27] Sunghoon Kim,et al. Nucleolar Localization of Human Methionyl–Trna Synthetase and Its Role in Ribosomal RNA Synthesis , 2000, The Journal of cell biology.
[28] A. Aviv,et al. Homocysteine thiolactone and protein homocysteinylation in human endothelial cells: implications for atherosclerosis. , 2000, Circulation research.
[29] J. Shin,et al. A novel anti-tumor cytokine contains an RNA binding motif present in aminoacyl-tRNA synthetases. , 2000, The Journal of biological chemistry.