scholarly article | Q13442814 |
P819 | ADS bibcode | 2013PNAS..11012289R |
P356 | DOI | 10.1073/PNAS.1300781110 |
P932 | PMC publication ID | 3725067 |
P698 | PubMed publication ID | 23836657 |
P5875 | ResearchGate publication ID | 247772828 |
P50 | author | Andrey L. Konevega | Q40019464 |
Matthias Peter | Q58208774 | ||
Marina Rodnina | Q21264368 | ||
P2093 | author name string | Patrick G A Pedrioli | |
Namit Ranjan | |||
Kshitiz Tyagi | |||
Joerg Mittelstaet | |||
Vanessa Anissa Nathalie Rezgui | |||
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Modified nucleotides in tRNA(Lys) and tRNA(Val) are important for translocation | Q46343678 | ||
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Ubiquitin-related modifier Urm1 acts as a sulphur carrier in thiolation of eukaryotic transfer RNA. | Q27932043 | ||
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iProphet: multi-level integrative analysis of shotgun proteomic data improves peptide and protein identification rates and error estimates | Q34005153 | ||
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Summary: the modified nucleosides of RNA. | Q34057777 | ||
A role for tRNA modifications in genome structure and codon usage | Q34264870 | ||
Translational control of cell division by Elongator | Q36073480 | ||
Translational infidelity-induced protein stress results from a deficiency in Trm9-catalyzed tRNA modifications | Q36391935 | ||
The conserved Wobble uridine tRNA thiolase Ctu1-Ctu2 is required to maintain genome integrity | Q36535553 | ||
P433 | issue | 30 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 12289-12294 | |
P577 | publication date | 2013-07-08 | |
P1433 | published in | Proceedings of the National Academy of Sciences of the United States of America | Q1146531 |
P1476 | title | tRNA tKUUU, tQUUG, and tEUUC wobble position modifications fine-tune protein translation by promoting ribosome A-site binding | |
P478 | volume | 110 |
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Q91986341 | Control of translation elongation in health and disease |
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Q38326905 | Elongator, a conserved complex required for wobble uridine modifications in eukaryotes |
Q36676640 | Elongator-dependent modification of cytoplasmic tRNALysUUU is required for mitochondrial function under stress conditions |
Q41244150 | Elp3 and Dph3 of Schizosaccharomyces pombe mediate cellular stress responses through tRNALysUUU modifications |
Q47238965 | Elp3 and RlmN: A tale of two mitochondrial tail-anchored radical SAM enzymes in Toxoplasma gondii. |
Q37346677 | Elp3 links tRNA modification to IRES-dependent translation of LEF1 to sustain metastasis in breast cancer |
Q37131488 | Essentiality of threonylcarbamoyladenosine (t(6)A), a universal tRNA modification, in bacteria |
Q28070578 | Genome recoding by tRNA modifications |
Q60948590 | Impact of tRNA Modifications and tRNA-Modifying Enzymes on Proteostasis and Human Disease |
Q48166690 | Independent suppression of ribosomal +1 frameshifts by different tRNA anticodon loop modifications. |
Q63953814 | Kti12, a PSTK-like tRNA dependent ATPase essential for tRNA modification by Elongator. |
Q60931107 | Lifestyle modifications: coordinating the tRNA epitranscriptome with codon bias to adapt translation during stress responses |
Q89834374 | Loss of Elongator- and KEOPS-Dependent tRNA Modifications Leads to Severe Growth Phenotypes and Protein Aggregation in Yeast |
Q35572860 | Loss of anticodon wobble uridine modifications affects tRNA(Lys) function and protein levels in Saccharomyces cerevisiae |
Q41188025 | Loss of ncm5 and mcm5 wobble uridine side chains results in an altered metabolic profile |
Q37698279 | Loss of wobble uridine modification in tRNA anticodons interferes with TOR pathway signaling |
Q35234097 | MTO1 mediates tissue specificity of OXPHOS defects via tRNA modification and translation optimization, which can be bypassed by dietary intervention |
Q38845904 | Mechanism and biological role of Dnmt2 in Nucleic Acid Methylation. |
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Q91910543 | Molecular basis of tRNA recognition by the Elongator complex |
Q50026963 | Monitoring the 5-methoxycarbonylmethyl-2-thiouridine (mcm5s2U) modification in eukaryotic tRNAs via the gamma-toxin endonuclease. |
Q28596584 | NSUN3 and ABH1 modify the wobble position of mt-tRNAMet to expand codon recognition in mitochondrial translation |
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Q26752314 | Nucleoside modifications in the regulation of gene expression: focus on tRNA |
Q35855945 | Optimization of Codon Translation Rates via tRNA Modifications Maintains Proteome Integrity |
Q27930355 | Phosphorylation of Elp1 by Hrr25 is required for elongator-dependent tRNA modification in yeast. |
Q41824333 | Protein degradation and dynamic tRNA thiolation fine-tune translation at elevated temperatures |
Q57267520 | Queuosine-modified tRNAs confer nutritional control of protein translation |
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Q42011079 | Role of Pseudouridine Formation by Deg1 for Functionality of Two Glutamine Isoacceptor tRNAs |
Q92982456 | SSD1 suppresses phenotypes induced by the lack of Elongator-dependent tRNA modifications |
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Q30313967 | Structural basis for tRNA modification by Elp3 from Dehalococcoides mccartyi |
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Q27011240 | The diphthamide modification pathway from Saccharomyces cerevisiae--revisited |
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Q42127112 | The emerging role of complex modifications of tRNA(Lys)UUU in signaling pathways |
Q41905019 | The role of wobble uridine modifications in +1 translational frameshifting in eukaryotes. |
Q36061524 | The tRNA methyltransferase Dnmt2 is required for accurate polypeptide synthesis during haematopoiesis |
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Q28551768 | Trm9-Catalyzed tRNA Modifications Regulate Global Protein Expression by Codon-Biased Translation |
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Q35866256 | Understanding Biases in Ribosome Profiling Experiments Reveals Signatures of Translation Dynamics in Yeast |
Q41669285 | Use of a Yeast tRNase Killer Toxin to Diagnose Kti12 Motifs Required for tRNA Modification by Elongator. |
Q39170989 | Wobble uridine modifications-a reason to live, a reason to die?! |
Q40500343 | Yeast Elongator protein Elp1p does not undergo proteolytic processing in exponentially growing cells. |
Q49906097 | mRNA Translation Gone Awry: Translation Fidelity and Neurological Disease |
Q42351643 | tRNA anticodon loop modifications ensure protein homeostasis and cell morphogenesis in yeast |
Q34960691 | tRNA thiolation links translation to stress responses in Saccharomyces cerevisiae |
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