On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
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Insights into tRNA-Dependent Amidotransferase Evolution and Catalysis from the Structure of the Aquifex aeolicus EnzymeTwo distinct regions in Staphylococcus aureus GatCAB guarantee accurate tRNA recognitionStructure of an archaeal non-discriminating glutamyl-tRNA synthetase: a missing link in the evolution of Gln-tRNAGln formationThe Structure of Allophanate Hydrolase from Granulibacter bethesdensis Provides Insights into Substrate Specificity in the Amidase Signature FamilyStructural conservation of an ancient tRNA sensor in eukaryotic glutaminyl-tRNA synthetaseA genomic glimpse of aminoacyl-tRNA synthetases in malaria parasite Plasmodium falciparumGlutamyl-tRNAGln amidotransferase is essential for mammalian mitochondrial translation in vivoAn extension of the coevolution theory of the origin of the genetic codeEvolutionary patterns in the sequence and structure of transfer RNA: a window into early translation and the genetic codeFrom one amino acid to another: tRNA-dependent amino acid biosynthesisSynthesis of Glu-tRNA(Gln) by engineered and natural aminoacyl-tRNA synthetasesThe archaeal transamidosome for RNA-dependent glutamine biosynthesis.Structure of the Pseudomonas aeruginosa transamidosome reveals unique aspects of bacterial tRNA-dependent asparagine biosynthesis.The predatory bacterium Bdellovibrio bacteriovorus aspartyl-tRNA synthetase recognizes tRNAAsn as a substrate.Gln-tRNAGln synthesis in a dynamic transamidosome from Helicobacter pylori, where GluRS2 hydrolyzes excess Glu-tRNAGlnRational design of an evolutionary precursor of glutaminyl-tRNA synthetase.Riboswitch (T-box)-mediated control of tRNA-dependent amidation in Clostridium acetobutylicum rationalizes gene and pathway redundancy for asparagine and asparaginyl-trnaasn synthesis.Cytonuclear Interactions in the Evolution of Animal Mitochondrial tRNA MetabolismReconstitution of Protein Translation of Mycobacterium Reveals Functional Conservation and Divergence with the Gram-Negative Bacterium Escherichia coliAmino acid modifications on tRNA.Dual targeting of a tRNAAsp requires two different aspartyl-tRNA synthetases in Trypanosoma bruceiTransfer RNA: a dancer between charging and mis-charging for protein biosynthesis.Relaxed tRNA specificity of the Staphylococcus aureus aspartyl-tRNA synthetase enables RNA-dependent asparagine biosynthesis.Systems-Based Analysis of Modified tRNA BasesKasugamycin potentiates rifampicin and limits emergence of resistance in by specifically decreasing mycobacterial mistranslation
P2860
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P2860
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
description
2008 nî lūn-bûn
@nan
2008 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2008 թվականի մարտին հրատարակված գիտական հոդված
@hy
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
name
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@ast
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@en
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@nl
type
label
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@ast
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@en
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@nl
prefLabel
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@ast
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@en
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@nl
P2860
P3181
P1476
On the evolution of the tRNA-dependent amidotransferases, GatCAB and GatDE
@en
P2093
Kelly Sheppard
P2860
P304
P3181
P356
10.1016/J.JMB.2008.01.016
P407
P50
P577
2008-03-28T00:00:00Z