tV(AAC)L Literature Guide Help

tV(AAC)L - DNA/RNA Sequence Features (11)

ReferenceOther Genes Addressed
Marck C, et al.  (2006) The RNA polymerase III-dependent family of genes in hemiascomycetes: comparative RNomics, decoding strategies, transcription and evolutionary implications. Nucleic Acids Res 34(6):1816-35
Giuliodori S, et al.  (2003) A composite upstream sequence motif potentiates tRNA gene transcription in yeast. J Mol Biol 333(1):1-20
Hani J and Feldmann H  (1998) tRNA genes and retroelements in the yeast genome. Nucleic Acids Res 26(3):689-96
Percudani R, et al.  (1997) Transfer RNA gene redundancy and translational selection in Saccharomyces cerevisiae. J Mol Biol 268(2):322-30
Vlassov VV, et al.  (1983) Interaction of tRNAPhe and tRNAVal with aminoacyl-tRNA synthetases. A chemical modification study. Eur J Biochem 132(3):537-44
Favorova OO, et al.  (1981) Partial digestion of tRNA--aminoacyl-tRNA synthetase complexes with cobra venom ribonuclease. Biochemistry 20(4):1006-11
Aoyagi S, et al.  (1977) Isolation and characterization of valine transfer RNA from Saccharomyces cerevisiae. J Biol Chem 252(8):2560-5
Bhanot OS, et al.  (1977) Bisulfite-induced C changed to U transitions in yeast valine tRNA. J Biol Chem 252(8):2566-74
Grineva NI, et al.  (1977) Complementary addressed modification of yeast tRNA Val 1 with alkylating derivative of d(pC-G)-A. The positions of the alkylated nucleotides and the course of the alkylation in the complex. Nucleic Acids Res 4(5):1609-31
Grineva NI, et al.  (1976) [Complementarily addressed alkylation of yeast tRNA 1 Val with chloroethylmethylaminobenzylidene d(pC-G)-A. Proof of the modification of the third nucleotide located at the 5'-terminus of the complete binding site of the reagent] Mol Biol (Mosk) 10(6):1260-71
Chambers RW, et al.  (1973) Inactivation of valine acceptor ativity by a C-U missense change in the anticodon of yeast valine transfer ribonucleic acid. J Biol Chem 248(15):5549-51