The asparagine-transamidosome from Helicobacter pylori: a dual-kinetic mode in non-discriminating aspartyl-tRNA synthetase safeguards the genetic code.
about
Ancient translation factor is essential for tRNA-dependent cysteine biosynthesis in methanogenic archaeaStructure of the Pseudomonas aeruginosa transamidosome reveals unique aspects of bacterial tRNA-dependent asparagine biosynthesis.A tRNA-independent mechanism for transamidosome assembly promotes aminoacyl-tRNA transamidationDirection of aminoacylated transfer RNAs into antibiotic synthesis and peptidoglycan-mediated antibiotic resistanceExploring the evolutionary diversity and assembly modes of multi-aminoacyl-tRNA synthetase complexes: lessons from unicellular organisms.Characterization of tunnel mutants reveals a catalytic step in ammonia delivery by an aminoacyl-tRNA amidotransferase.
P2860
The asparagine-transamidosome from Helicobacter pylori: a dual-kinetic mode in non-discriminating aspartyl-tRNA synthetase safeguards the genetic code.
description
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name
The asparagine-transamidosome ...... e safeguards the genetic code.
@ast
The asparagine-transamidosome ...... e safeguards the genetic code.
@en
type
label
The asparagine-transamidosome ...... e safeguards the genetic code.
@ast
The asparagine-transamidosome ...... e safeguards the genetic code.
@en
prefLabel
The asparagine-transamidosome ...... e safeguards the genetic code.
@ast
The asparagine-transamidosome ...... e safeguards the genetic code.
@en
P2093
P2860
P356
P1476
The asparagine-transamidosome ...... e safeguards the genetic code.
@en
P2093
Bernard Lorber
Daniel Kern
Frédéric Fischer
Jacques Lapointe
Jonathan L Huot
Tamara L Hendrickson
P2860
P304
P356
10.1093/NAR/GKS167
P407
P577
2012-02-22T00:00:00Z