2018
Lso2 is a conserved ribosome-bound protein required for translational recovery in yeast
Wang YJ, Vaidyanathan PP, Rojas-Duran MF, Udeshi ND, Bartoli KM, Carr SA, Gilbert WV. Lso2 is a conserved ribosome-bound protein required for translational recovery in yeast. PLOS Biology 2018, 16: e2005903. PMID: 30208026, PMCID: PMC6135351, DOI: 10.1371/journal.pbio.2005903.Peer-Reviewed Original ResearchMeSH KeywordsAmino Acid SequenceCodon, InitiatorConserved SequenceGene Expression Regulation, FungalHeLa CellsHumansPeptide Chain Elongation, TranslationalPeptide Chain Termination, TranslationalProtein BiosynthesisRibosomal ProteinsRibosomesRNA, RibosomalRNA, TransferSaccharomyces cerevisiaeSaccharomyces cerevisiae ProteinsConceptsRibosome-binding proteinsRibosome-associated proteinsCodon-specific changesCoiled-coil domainQuantitative mass spectrometryGTPase activation centerRibosome-binding activityMost tRNAsRibosome profilingGene regulationMost genesCellular homeostasisTranslation defectsRibosomal RNATranslational recoveryComplete complementStart codonStop codonLso2Protein synthesisOpen reading frame 2ProteinImportant functionsCodonYeast
2013
Genomically Recoded Organisms Expand Biological Functions
Lajoie MJ, Rovner AJ, Goodman DB, Aerni HR, Haimovich AD, Kuznetsov G, Mercer JA, Wang HH, Carr PA, Mosberg JA, Rohland N, Schultz PG, Jacobson JM, Rinehart J, Church GM, Isaacs FJ. Genomically Recoded Organisms Expand Biological Functions. Science 2013, 342: 357-360. PMID: 24136966, PMCID: PMC4924538, DOI: 10.1126/science.1241459.Peer-Reviewed Original ResearchMeSH KeywordsAmino Acid SubstitutionAmino AcidsBacteriophage T7Codon, TerminatorEscherichia coliEscherichia coli ProteinsGenetic EngineeringGenome, BacterialOrganisms, Genetically ModifiedPeptide Chain Termination, TranslationalPeptide Termination FactorsConceptsNew genetic codesRelease factor 1UAG stop codonNonstandard amino acidsEscherichia coli MG1655UAA codonGenetic codeColi MG1655Biological functionsStop codonChemical diversityT7 bacteriophageAmino acidsFactor 1CodonMG1655OrganismsProteinDiversityDeletionBacteriophagesViral resistanceTranslation functionGROVivo
1990
Metabolism of Non‐Translatable Globin mRNAs Arising from Premature Translation Termination Codons
MAGNUS T, BASERGA S, STOLLE C, TAKESHITA K, BENZ E. Metabolism of Non‐Translatable Globin mRNAs Arising from Premature Translation Termination Codons. Annals Of The New York Academy Of Sciences 1990, 612: 55-66. PMID: 2291574, DOI: 10.1111/j.1749-6632.1990.tb24290.x.Peer-Reviewed Original Research
1988
Transfer ribonucleic acid-mediated suppression of termination codons in Escherichia coli.
Eggertsson G, Söll D. Transfer ribonucleic acid-mediated suppression of termination codons in Escherichia coli. Microbiology And Molecular Biology Reviews 1988, 52: 354-74. PMID: 3054467, PMCID: PMC373150, DOI: 10.1128/mr.52.3.354-374.1988.Peer-Reviewed Original ResearchAnticodonCodonEscherichia coliMutationPeptide Chain Termination, TranslationalRNA, MessengerRNA, TransferSuppression, Genetic
1968
Studies on polynucleotides LXXXV. Partial purification of an amber supressor tRNA and studies on in vitro suppression
Söll D. Studies on polynucleotides LXXXV. Partial purification of an amber supressor tRNA and studies on in vitro suppression. Journal Of Molecular Biology 1968, 34: 175-187. PMID: 4938541, DOI: 10.1016/0022-2836(68)90243-x.Peer-Reviewed Original ResearchConceptsSuppressor tRNAColi cellsAmber suppressor genesAmber suppressor tRNAProtein synthesis experimentsEscherichia coli cellsE. coli cellsAmber mutantsTRNASuppressor geneProtein synthesisCrude tRNAGenesRNAPartial purificationBacteriophage f2CellsMutantsRibosomesUAGSpeciesMessengerSuppressionChain terminationBinding
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