Human 18 S ribosomal RNA sequence inferred from DNA sequence. Variations in 18 S sequences and secondary modification patterns between vertebrates
- 15 December 1985
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 232 (3) , 725-733
- https://doi.org/10.1042/bj2320725
Abstract
We have determined the DNA sequences encoding 18 S ribosomal RNA in man and in the frog, Xenopus borealis. We have also corrected the Xenopus laevis 18 S sequence: an A residue follows G-684 in the sequence. These and other available data provide a number of representative examples of variation in primary structure and secondary modification of 18 S ribosomal RNA between different groups of vertebrates. First, Xenopus laevis and Xenopus borealis 18 S ribosomal genes differ from each other by only two base substitutions, and we have found no evidence of intraspecies heterogeneity within the 18 S ribosomal DNA of Xenopus (in contrast to the Xenopus transcribed spacers). Second, the human 18 S sequence differs from that of Xenopus by approx. 6.5%. About 4% of the differences are single base changes; the remainder comprise insertions in the human sequence and other changes affecting several nucleotides. Most of these more extensive changes are clustered in a relatively short region between nucleotides 190 and 280 in the human sequence. Third, the human 18 S sequence differs from non-primate mammalian sequences by only about 1%. Fourth, nearly all of the 47 methyl groups in mammalian 18 S ribosomal RNA can be located in the sequence. The methyl group distribution corresponds closely to that in Xenopus, but there are several extra methyl groups in mammalian 18 S ribosomal RNA. Finally, minor revisions are made to the estimated numbers of pseudouridines in human and Xenopus 18 S ribosomal RNA.This publication has 35 references indexed in Scilit:
- Nucleotide sequence of a crustacean 18S ribosomal RNA gene and secondary structure of eukaryotic small subunit ribosoraal RNAsNucleic Acids Research, 1984
- DNA sequencing with chain-terminating inhibitorsProceedings of the National Academy of Sciences, 1977
- Albumin Phylogeny for Clawed Frogs ( Xenopus )Science, 1977
- Nucleotide sequences within the ribosomal ribonucleic acids of HeLa cells, Xenopus laevis and chick embryo fibroblastsJournal of Molecular Biology, 1976
- Sequence Determination of 5′‐Terminal and 3′‐Terminal T1 Oligonucleotides of 18‐S Ribosomal RNA of a Mouse Cell Line (L 5178 Y)European Journal of Biochemistry, 1975
- The methylated nucleotide sequences in HeLa cell ribosomal RNA and its precursorsJournal of Molecular Biology, 1974
- Analysis of the Methylation Sites in Yeast Ribosomal RNAEuropean Journal of Biochemistry, 1973
- Secondary Structure Maps of RNA: Processing of HeLa Ribosomal RNAProceedings of the National Academy of Sciences, 1973
- Partial sequence analysis of ribosomal RNA from HeLa cells: II. Evidence for sequences of non-ribosomal type in 45 and 32 s ribosomal RNA precursorsJournal of Molecular Biology, 1968
- The effects of methionine deprivation on ribosome synthesis in HeLa cells.Proceedings of the National Academy of Sciences, 1967