The nucleotide sequence of the 5S rRNA from<i>Legionella pneumophila</i>
Nucleic Acids ResearchPublished 1 January 1987Open access
M. T. MacDonell, Rita R. Colwell
Citations23
Generate an AI Snapshot to get a quick, structured summary of this paper.
Study Snapshot
ObjectiveStudy objective
MethodsResearch methodology
PopulationPopulation studied
Sample sizeSample sizes
OutcomesStudy outcomes here
ResultsStudy results comes here
LimitationsResearch study limitations comes here
A concise AI-generated summary of the paper will appear here once you click Generate AI Snapshot.
TL;DR
The ribonucleotide sequence of the 5S ribosomal RNA purified from Legionella pneumophila strain 62212 was determined enzymatically using the modifications described in and the sequence is depicted as folded into the "chair" secondary structure model described by Erdmann et al. (3).
Abstract
M.T. MacDonell, R.R. Colwell; The nucleotide sequence of the 5S rRNA from Legionella pneumophila, Nucleic Acids Research, Volume 15, Issue 3, 11 February 1
Keywords
Biochemistry, Genetics and Molecular BiologyEnvironmental Science
Nucleic Acids ResearchMapping adenines, guanines, and pyrimidines in RNA
1,379 Citations1977Helen Donis-Keller, Allan M. Maxam +1 more
The positions of adenines, guanines, and pyrimidines can be determined by partial nuclease digestion of a terminally labeles RNA molecule and form the basis of an RNA sequencing method and are demonstrated on yeast 5.8S ribosomal RNA.
FEBS LettersNucleotide base sequence of vibrionaceae 5 S rRNA
31 Citations1984M. T. MacDonell, Rita R. Colwell
Nucleotide base sequences of 5 S rRNAs isolated from Vibrio vulnificus,Vibrio anguillarum, and Aeromonas hydrophila provide information useful in the evaluation of the evolution of bacterial species.
Journal of Molecular EvolutionNuclease S1 analysis of eubacterial 5S rRNA secondary structure
11 Citations1985M. T. MacDonell, Rita R. Colwell
The locations of base-paired regions determined by enzymatic analysis corroborate the general features of the proposed universal five-helix model for prokaryotic 5S rRNA, although the results of this study suggest a significant difference between proKaryotic and eukaryotic5S rRNAs in the evolution of helix IV.
