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1 ongation factors 1A and 2 and A site-cognate aminoacylated tRNA.
2 ranslational resources, namely ribosomes and aminoacylated tRNAs.
3 eukaryotic elongation factors 1A and 2, and aminoacylated tRNAs.
4 ed by 70S ribosomes programmed with mRNA and aminoacylated tRNAs.
5 on of amino acids via synthetically prepared aminoacylated tRNAs.
7 a 2.3- to 4.2-fold decrease in the level of aminoacylated tRNAs and a >2-fold decrease in growth rat
9 denosine towards a beta-strand, such that an aminoacylated tRNA at this position would be sterically
10 loped that directly measures the fraction of aminoacylated tRNA by following amino acid attachment to
11 ng to dramatic reductions in the fraction of aminoacylated tRNAs, cessation of protein synthesis and
12 rentially assembles with RanGTP and spliced, aminoacylated tRNAs, documenting its role in tRNA nuclea
13 presence of the heterologous aaRSs, and the aminoacylated tRNAs function efficiently in suppression
14 e or puromycin, which inhibit utilization of aminoacylated tRNA in cells; and 3) in cells having a te
16 cating that much of the binding affinity for aminoacylated tRNA is derived from interaction with the
18 a strong (70-75%) reduction in the level of aminoacylated tRNA(Leu(UUR)) and a decrease in mitochond
19 To determine if the decreased fraction of aminoacylated tRNA(Leu(UUR)) in A3243G mutant cells was
22 ained limited primarily to canonical RNA, 3'-aminoacylated tRNAs, nucleobase-modified RNAs, and 5'-ca
23 diting-defective strain, increased levels of aminoacylated tRNA(Phe) led to continued synthesis of th
24 n the absence of editing, cellular levels of aminoacylated tRNA(Phe) were elevated during amino acid
25 cid starvation is sensed by depletion of the aminoacylated tRNA pools, and this results in accumulati
26 the repair of the genome, while ARSs provide aminoacylated tRNA precursors for protein synthesis.
27 ha [eEF1A]) aids the specificity of Msn5 for aminoacylated tRNAs to form a quaternary complex consist
28 (aaPGSs) are membrane proteins that utilize aminoacylated tRNAs to modify membrane lipids with amino
29 ion and dissociation rates of deacylated and aminoacylated tRNAs to the A-site and P-site of E. coli
31 actor 1A (eEF1A; EF-Tu in bacteria) delivers aminoacylated-tRNA to the A-site of the ribosome, wherea
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