The nucleotide sequence of the cytoplasmic 5 S ribosomal RNA from Spinacia oleracea has been determined. A secondary structural model possessing four base-paired regions can be constructed from the primary structure. This RNA shows 90 to 93% nucleotide sequence homology with other higher plant cytoplasmic 5 S RNAs and 73% homology with that of the lower eukaryote Chlorella. The spinach 5 S RNA has the nucleotide sequence identical with that of Chlorella in two important single-stranded regions, the sequence C10 AUACC and the dodecanucleotide sequence at positions 33 to 44. A nucleotide sequence similar or identical with C10 AUACC is found in most other eukaryotic 5 S RNAs, including the 5 S RNA from human KB cells. In addition, a single-stranded loop of 12 residues corresponding to positions 33 to 44 in the spinach 5 S RNA sequence may be a general feature of eukaryotic cytoplasmic 5 S RNAs, while prokaryotic 5 S RNAs have a 13-member loop for the corresponding residues. Several other important homologies in primary and secondary structure have also been observed in comparing spinach 5 S RNA to other 5 S RNAs.
The nucleotide sequence of spinach chloroplast methionine elongator tRNA (sp. chl. tRNAm Met) has been determined. This tRNA is considerably more homologous to E. coli tRNAm Met (67% homology) than to the three known eukaryotic tRNAm Met (50-55% homology). Sp. chl. tRNAm Met, like the eight other chloroplast tRNAs sequenced, contains a methylated GG sequence in the dihydrouridine loop and lacks unusual structural features which have been found in several mitochondrial tRNAs.
Through the use of a variety of post-labeling techniques, the nucleotide sequence of a major species of leucine tRNA from bovine liver was determined to be pG-G-U-A-G-C-G-U-G-m-G-C-ac-C-G-A-G-C-G-G-D-C-psi-A-A-G-G-C-m-G-C-U-G-G-A-psim- U-I-A-G-m-G-C-psi-C-C-A-G-U-C-psi-C-psi-U-C-G-G-G-G-G-m-C-G-U-G-G-G-T-psi-C-G-m -A-A-U-C-C-C-A-C-C-G-C-U-G-C-C-A-C-C-AOH. A comparison of known sequences of leucine tRNAs shows a consistent set of features which clearly distinguish prokaryotic and eukaryotic leucine tRNAs from each other.