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  • Author: Florentz C
  • References

Author: Florentz C


References 22 references


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  • Fender A, et al. (2004) Functional idiosyncrasies of tRNA isoacceptors in cognate and noncognate aminoacylation systems. Biochimie 86(1):21-9 PMID:14987797
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  • Wientges J, et al. (2000) Selection of viral RNA-derived tRNA-like structures with improved valylation activities. Biochemistry 39(20):6207-18 PMID:10821696
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  • Becker HF, et al. (1998) Pseudouridine and ribothymidine formation in the tRNA-like domain of turnip yellow mosaic virus RNA. Nucleic Acids Res 26(17):3991-7 PMID:9705510
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  • Frugier M, et al. (1998) Sequences outside recognition sets are not neutral for tRNA aminoacylation. Evidence for nonpermissive combinations of nucleotides in the acceptor stem of yeast tRNAPhe. J Biol Chem 273(19):11605-10 PMID:9565578
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  • Sissler M, et al. (1998) The RNA sequence context defines the mechanistic routes by which yeast arginyl-tRNA synthetase charges tRNA. RNA 4(6):647-57 PMID:9622124
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  • Becker HF, et al. (1997) Major identity determinants for enzymatic formation of ribothymidine and pseudouridine in the T psi-loop of yeast tRNAs. J Mol Biol 274(4):505-18 PMID:9417931
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  • Sissler M, et al. (1997) Mirror image alternative interaction patterns of the same tRNA with either class I arginyl-tRNA synthetase or class II aspartyl-tRNA synthetase. Nucleic Acids Res 25(24):4899-906 PMID:9396794
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  • Sissler M, et al. (1996) Arginine aminoacylation identity is context-dependent and ensured by alternate recognition sets in the anticodon loop of accepting tRNA transcripts. EMBO J 15(18):5069-76 PMID:8890180
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  • Frugier M, et al. (1994) Identity switches between tRNAs aminoacylated by class I glutaminyl- and class II aspartyl-tRNA synthetases. Biochemistry 33(33):9912-21 PMID:8060999
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  • Puglisi JD, et al. (1993) Influence of tRNA tertiary structure and stability on aminoacylation by yeast aspartyl-tRNA synthetase. Nucleic Acids Res 21(1):41-9 PMID:8441619
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  • Pütz J, et al. (1993) Additive, cooperative and anti-cooperative effects between identity nucleotides of a tRNA. EMBO J 12(7):2949-57 PMID:8335008
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  • Perret V, et al. (1992) Effect of conformational features on the aminoacylation of tRNAs and consequences on the permutation of tRNA specificities. J Mol Biol 226(2):323-33 PMID:1640453
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  • Rudinger J, et al. (1992) Determinant nucleotides of yeast tRNA(Asp) interact directly with aspartyl-tRNA synthetase. Proc Natl Acad Sci U S A 89(13):5882-6 PMID:1631068
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  • Pütz J, et al. (1991) Identity elements for specific aminoacylation of yeast tRNA(Asp) by cognate aspartyl-tRNA synthetase. Science 252(5013):1696-9 PMID:2047878
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  • Florentz C, et al. (1990) Stimulatory effect of ammonium sulfate at high concentrations on the aminoacylation of tRNA and tRNA-like molecules. FEBS Lett 261(2):335-8 PMID:2178975
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  • Giegé R, et al. (1990) Exploring the aminoacylation function of transfer RNA by macromolecular engineering approaches. Involvement of conformational features in the charging process of yeast tRNA(Asp). Biochimie 72(6-7):453-61 PMID:2124148
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  • Perret V, et al. (1990) Efficient aminoacylation of a yeast tRNA(Asp) transcript with a 5' extension. FEBS Lett 270(1-2):4-8 PMID:2226785
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  • Perret V, et al. (1989) Structural analogies between the 3' tRNA-like structure of brome mosaic virus RNA and yeast tRNATyr revealed by protection studies with yeast tyrosyl-tRNA synthetase. Eur J Biochem 185(2):331-9 PMID:2684668
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