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dc.creatorGraindorge, J. S.en
dc.creatorSenger, B.en
dc.creatorTritch, D.en
dc.creatorSimos, G.en
dc.creatorFasiolo, F.en
dc.date.accessioned2015-11-23T10:29:08Z
dc.date.available2015-11-23T10:29:08Z
dc.date.issued2005
dc.identifier10.1021/bi049024z
dc.identifier.issn62960
dc.identifier.urihttp://hdl.handle.net/11615/28181
dc.description.abstractYeast methionyl-tRNA synthetase (MetRS) and glutamyl-tRNA synthetase (GluRS) possess N-terminal extensions that bind the cofactor Arc1p in trans. The strength of GluRS-Arc1p interaction is high enough to allow copurification of the two macromolecules in a 1:1 ratio, in contrast to MetRS. Deletion analysis from the C-terminal end of the GluRS appendix combined with previous N-terminal deletions of GluRS allows restriction of the Arc1p binding site to the 110-170 amino acid region of GluRS. This region has been shown to correspond to a novel protein-protein interaction domain present in both GluRS and Arc1p but not in MetRS [Galani, K., Grosshans, H., Deinert, K., Hurt, E. C., and Simos, G. (2001) EMBO J. 20, 6889-6898]. The GluRS apoenzyme fails to show significant kinetics of tRNA aminoacylation and charges unfractionated yeast tRNA at a level 10-fold reduced compared to Arc1p-bound GluRS. The Km values for tRNA Glu measured in the ATP-PPi exchange were similar for the two forms of GluRS, whereas kcat is increased 2-fold in the presence of Arc1p. Band-shift analysis revealed a 100-fold increase in tRNA binding affinity when Arc1p is bound to GluRS. This increase requires the RNA binding properties of the full-length Arc1p since Arc1p N domain leaves the K d of GluRS for tRNA unchanged. Transcripts of yeast tRNA Glu were poor substrates for measuring tRNA aminoacylation and could not be used to clarify whether Arc1p has a specific effect on the tRNA charging reaction.en
dc.source.urihttp://www.scopus.com/inward/record.url?eid=2-s2.0-13444302274&partnerID=40&md5=0ad72e29823b3b0925615ae60987a1ab
dc.subjectAcylationen
dc.subjectAdenosinetriphosphateen
dc.subjectAmino acidsen
dc.subjectMacromoleculesen
dc.subjectModulationen
dc.subjectPurificationen
dc.subjectRNAen
dc.subjectSubstratesen
dc.subjectYeasten
dc.subjectAminoacylationen
dc.subjectBand-shift analysisen
dc.subjectBinding propertiesen
dc.subjectYeast glutamyl-tRNA synthetase (GLuRS)en
dc.subjectEnzymesen
dc.subjectamino acid transfer RNA ligaseen
dc.subjectglutamic acid transfer RNAen
dc.subjectanalytic methoden
dc.subjectanimal cellen
dc.subjectarticleen
dc.subjectbinding siteen
dc.subjectenzyme activationen
dc.subjectenzyme activityen
dc.subjectgene deletionen
dc.subjectgenetic analysisen
dc.subjectmacromoleculeen
dc.subjectnonhumanen
dc.subjectpriority journalen
dc.subjectprotein analysisen
dc.subjectprotein foldingen
dc.subjectprotein functionen
dc.subjectprotein protein interactionen
dc.subjectAdenosine Triphosphateen
dc.subjectAmino Acid Sequenceen
dc.subjectBase Sequenceen
dc.subjectDiphosphatesen
dc.subjectGene Expression Regulation, Fungalen
dc.subjectGlutamate-tRNA Ligaseen
dc.subjectKineticsen
dc.subjectMolecular Sequence Dataen
dc.subjectPeptide Fragmentsen
dc.subjectProtein Bindingen
dc.subjectProtein Structure, Tertiaryen
dc.subjectRNA, Fungalen
dc.subjectRNA, Transfer, Gluen
dc.subjectRNA-Binding Proteinsen
dc.subjectSaccharomyces cerevisiaeen
dc.subjectSaccharomyces cerevisiae Proteinsen
dc.subjectTranscription, Geneticen
dc.subjectAnimaliaen
dc.titleRole of Arc1p in the modulation of yeast glutamyl-tRNA synthetase activityen
dc.typejournalArticleen


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