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EMBO Reports|June 21, 2001
Disease-related versus polymorphic mutations in human mitochondrial tRNAs. Where is the difference?C Florentz, M SisslerThe EMBO Journal|September 16, 1996
Arginine aminoacylation identity is context-dependent and ensured by alternate recognition sets in the anticodon loop of accepting tRNA transcriptsM Sissler, R Giegé, C FlorentzNucleic Acids Research|November 4, 1998
Universal rules and idiosyncratic features in tRNA identityR Giegé, M Sissler, C FlorentzRNA (New York, N.Y.)|June 11, 1998
The RNA sequence context defines the mechanistic routes by which yeast arginyl-tRNA synthetase charges tRNAM Sissler, R Giegé, C FlorentzNucleic Acids Research|February 28, 1998
Mirror image alternative interaction patterns of the same tRNA with either class I arginyl-tRNA synthetase or class II aspartyl-tRNA synthetaseM Sissler, G Eriani, F Martin, et al.Cellular and Molecular Life Sciences : CMLS|August 29, 2003
Human mitochondrial tRNAs in health and diseaseC Florentz, B Sohm, P Tryoen-Tóth, et al.Journal of Molecular Biology|January 7, 1998
Major identity determinants for enzymatic formation of ribothymidine and pseudouridine in the T psi-loop of yeast tRNAsH F Becker, Y Motorin, M Sissler, et al.Nucleic Acids Research|May 1, 1997
Rapid selection of aminoacyl-tRNAs based on biotinylation of alpha-NH2 group of charged amino acidsJ Pütz, J Wientges, M Sissler, et al.Journal of Molecular Biology|September 5, 1986
Contact areas of the turnip yellow mosaic virus tRNA-like structure interacting with yeast valyl-tRNA synthetaseC Florentz, R GiegéBiochemistry|October 21, 1999
A Watson-Crick base-pair-disrupting methyl group (m1A9) is sufficient for cloverleaf folding of human mitochondrial tRNALysM Helm, R Giegé, C FlorentzPageof 7