Atypical archaeal tRNA pyrrolysine transcript behaves towards EF-Tu as a typical elongator tRNA.
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Selenocysteine, pyrrolysine, and the unique energy metabolism of methanogenic archaeaPyrrolysyl-tRNA synthetase-tRNA(Pyl) structure reveals the molecular basis of orthogonalityA natural genetic code expansion cassette enables transmissible biosynthesis and genetic encoding of pyrrolysinePyrrolysine is not hardwired for cotranslational insertion at UAG codonsComparative context analysis of codon pairs on an ORFeome scale.Structure of transfer RNAs: similarity and variabilitytRNA biology in mitochondriaThe residue mass of L-pyrrolysine in three distinct methylamine methyltransferases.An ancient family of SelB elongation factor-like proteins with a broad but disjunct distribution across archaeaTranslation termination in pyrrolysine-utilizing archaeaPyrrolysine and selenocysteine use dissimilar decoding strategies.Natural expansion of the genetic code.In vivo contextual requirements for UAG translation as pyrrolysine.Adding pyrrolysine to the Escherichia coli genetic code.Functional context, biosynthesis, and genetic encoding of pyrrolysine.Noncanonical secondary structure stabilizes mitochondrial tRNA(Ser(UCN)) by reducing the entropic cost of tertiary folding.Dynamics of Recognition between tRNA and elongation factor TuPylSn and the homologous N-terminal domain of pyrrolysyl-tRNA synthetase bind the tRNA that is essential for the genetic encoding of pyrrolysineDecreased aminoacylation in pathology-related mutants of mitochondrial tRNATyr is associated with structural perturbations in tRNA architecture.Misacylation of pyrrolysine tRNA in vitro and in vivo.Fidelity in archaeal information processing.Emergence and evolution.Near-cognate suppression of amber, opal and quadruplet codons competes with aminoacyl-tRNAPyl for genetic code expansion.Recognition of pyrrolysine tRNA by the Desulfitobacterium hafniense pyrrolysyl-tRNA synthetase.Unique characteristics of the pyrrolysine system in the 7th order of methanogens: implications for the evolution of a genetic code expansion cassette.tRNAPyl: Structure, function, and applications.
P2860
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P2860
Atypical archaeal tRNA pyrrolysine transcript behaves towards EF-Tu as a typical elongator tRNA.
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article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 10 February 2004
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@en
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
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type
label
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@en
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@nl
prefLabel
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@en
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@nl
P2093
P2860
P356
P1476
Atypical archaeal tRNA pyrroly ...... u as a typical elongator tRNA.
@en
P2093
Anne Théobald-Dietrich
Joëlle Rudinger-Thirion
Magali Frugier
Richard Giegé
P2860
P304
P356
10.1093/NAR/GKH266
P407
P577
2004-02-10T00:00:00Z