High content of proteins containing 21st and 22nd amino acids, selenocysteine and pyrrolysine, in a symbiotic deltaproteobacterium of gutless worm Olavius algarvensis
about
Selenocysteine, pyrrolysine, and the unique energy metabolism of methanogenic archaeaPyrrolysyl-tRNA synthetase-tRNA(Pyl) structure reveals the molecular basis of orthogonalityStructure of Desulfitobacterium hafniense PylSc, a pyrrolysyl-tRNA synthetaseUnveiling the structural basis for translational ambiguity tolerance in a human fungal pathogenTrends in selenium utilization in marine microbial world revealed through the analysis of the global ocean sampling (GOS) projectEvolutionary patterns in the sequence and structure of transfer RNA: a window into early translation and the genetic codeComparative genomic analyses of copper transporters and cuproproteomes reveal evolutionary dynamics of copper utilization and its link to oxygen.In silico identification of the sea squirt selenoproteome.General trends in trace element utilization revealed by comparative genomic analyses of Co, Cu, Mo, Ni, and Se.Translation termination in pyrrolysine-utilizing archaeaHorizontal gene transfer from extinct and extant lineages: biological innovation and the coral of life.In situ visualization of newly synthesized proteins in environmental microbes using amino acid tagging and click chemistry.Reducing the genetic code induces massive rearrangement of the proteome.Functional context, biosynthesis, and genetic encoding of pyrrolysine.Ancient horizontal gene transfer and the last common ancestorsSer or Leu: structural snapshots of mistranslation in Candida albicans.PylSn and the homologous N-terminal domain of pyrrolysyl-tRNA synthetase bind the tRNA that is essential for the genetic encoding of pyrrolysineThe pyrrolysine translational machinery as a genetic-code expansion toolReversion of a fungal genetic code alteration links proteome instability with genomic and phenotypic diversification.Ribosomal synthesis of nonstandard peptides.Distinct genetic code expansion strategies for selenocysteine and pyrrolysine are reflected in different aminoacyl-tRNA formation systems.Emergence and evolution.Structural clones of UAG decoding RNA.Challenges of site-specific selenocysteine incorporation into proteins by Escherichia coli.
P2860
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P2860
High content of proteins containing 21st and 22nd amino acids, selenocysteine and pyrrolysine, in a symbiotic deltaproteobacterium of gutless worm Olavius algarvensis
description
2007 nî lūn-bûn
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2007 թուականին հրատարակուած գիտական յօդուած
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2007 թվականին հրատարակված գիտական հոդված
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2007年の論文
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年学术文章
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2007年學術文章
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name
High content of proteins conta ...... tless worm Olavius algarvensis
@ast
High content of proteins conta ...... tless worm Olavius algarvensis
@en
High content of proteins conta ...... tless worm Olavius algarvensis
@nl
type
label
High content of proteins conta ...... tless worm Olavius algarvensis
@ast
High content of proteins conta ...... tless worm Olavius algarvensis
@en
High content of proteins conta ...... tless worm Olavius algarvensis
@nl
prefLabel
High content of proteins conta ...... tless worm Olavius algarvensis
@ast
High content of proteins conta ...... tless worm Olavius algarvensis
@en
High content of proteins conta ...... tless worm Olavius algarvensis
@nl
P2860
P356
P1476
High content of proteins conta ...... tless worm Olavius algarvensis
@en
P2093
Vadim N Gladyshev
P2860
P304
P356
10.1093/NAR/GKM514
P407
P577
2007-01-01T00:00:00Z