scholarly article | Q13442814 |
P50 | author | Dieter Söll | Q5275118 |
Lennart Randau | Q56547329 | ||
P2093 | author name string | Yong Xiong | |
Bradford J Stanley | |||
Andrew Kohlway | |||
Sarah Mechta | |||
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Molecular cloning of an apolipoprotein B messenger RNA editing protein | Q28580321 | ||
THUMP--a predicted RNA-binding domain shared by 4-thiouridine, pseudouridine synthases and RNA methylases | Q30663536 | ||
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A novel enzymatic pathway leading to 1-methylinosine modification in Haloferax volcanii tRNA. | Q34778281 | ||
Archaeal integrative genetic elements and their impact on genome evolution | Q34861286 | ||
An adenosine-to-inosine tRNA-editing enzyme that can perform C-to-U deamination of DNA. | Q35808735 | ||
RNA editing changes the identity of a mitochondrial tRNA in marsupials | Q35913022 | ||
A disease-causing point mutation in human mitochondrial tRNAMet results in tRNA misfolding leading to defects in translational initiation and elongation | Q41502419 | ||
Structural and functional accommodation of nucleotide variations at a conserved tRNA tertiary base pair. | Q41786691 | ||
Plant mitochondrial RNA editing | Q43444485 | ||
Substrate specificity for 4-thiouridine modification in Escherichia coli | Q44810094 | ||
Crystal structure of Bacillus anthracis ThiI, a tRNA-modifying enzyme containing the predicted RNA-binding THUMP domain | Q46847168 | ||
Transfer RNA genes from the hyperthermophilic Archaeon, Methanopyrus kandleri | Q48152932 | ||
Mutations affecting transition-state stabilization by residues coordinating zinc at the active site of cytidine deaminase. | Q54633068 | ||
Transfer RNA genes: landmarks for integration of mobile genetic elements in Dictyostelium discoideum | Q58493019 | ||
Crystallographic refinement of yeast aspartic acid transfer RNA | Q69905397 | ||
P433 | issue | 5927 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Archaea | Q10872 |
P304 | page(s) | 657-9 | |
P577 | publication date | 2009-05-01 | |
P1433 | published in | Science | Q192864 |
P1476 | title | A Cytidine Deaminase Edits C to U in Transfer RNAs in Archaea | |
P478 | volume | 324 |
Q27698012 | A covalent approach for site-specific RNA labeling in Mammalian cells |
Q35862616 | APOBEC2 is a monomer in solution: implications for APOBEC3G models |
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Q34243886 | Base methylations in the double-stranded RNA by a fused methyltransferase bearing unwinding activity |
Q96231021 | Comparative tRNA sequencing and RNA mass spectrometry for surveying tRNA modifications |
Q27671703 | Crystal structure of RlmM, the 2'O-ribose methyltransferase for C2498 of Escherichia coli 23S rRNA |
Q27682994 | Crystal structure of a 4-thiouridine synthetase-RNA complex reveals specificity of tRNA U8 modification |
Q27677450 | Crystal structures of the tRNA:m2G6 methyltransferase Trm14/TrmN from two domains of life |
Q35223503 | Deficiency of X-linked inverted duplicates with male-biased expression and the underlying evolutionary mechanisms in the Drosophila genome. |
Q26995371 | Determinants of tRNA editing and modification: avoiding conundrums, affecting function |
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Q41199731 | Editing and methylation at a single site by functionally interdependent activities |
Q34010890 | Evolution of the deaminase fold and multiple origins of eukaryotic editing and mutagenic nucleic acid deaminases from bacterial toxin systems |
Q34194427 | Formation of m2G6 in Methanocaldococcus jannaschii tRNA catalyzed by the novel methyltransferase Trm14. |
Q38298533 | From end to end: tRNA editing at 5'- and 3'-terminal positions. |
Q41583322 | Genotyping and Bio-Sensing Chemosensory Proteins in Insects |
Q33984519 | Identification of the determinants of tRNA function and susceptibility to rapid tRNA decay by high-throughput in vivo analysis |
Q34075840 | Mitochondrial tRNA 5'-editing in Dictyostelium discoideum and Polysphondylium pallidum |
Q64262803 | Multi-Substrate Specificity and the Evolutionary Basis for Interdependence in tRNA Editing and Methylation Enzymes |
Q39899867 | Novel modes of RNA editing in mitochondria |
Q90236456 | RNA editing in the forefront of epitranscriptomics and human health |
Q74441853 | RNA editing packs a one-two punch |
Q34341390 | RNA-Seq analyses reveal the order of tRNA processing events and the maturation of C/D box and CRISPR RNAs in the hyperthermophile Methanopyrus kandleri |
Q27712544 | Structural and functional analyses of the archaeal tRNA m2G/m22G10 methyltransferase aTrm11 provide mechanistic insights into site specificity of a tRNA methyltransferase that contains common RNA-binding modules |
Q27677448 | Structure of the bifunctional methyltransferase YcbY (RlmKL) that adds the m7G2069 and m2G2445 modifications in Escherichia coli 23S rRNA |
Q64928223 | The Evolution of Substrate Specificity by tRNA Modification Enzymes. |
Q24614775 | The RNA world hypothesis: the worst theory of the early evolution of life (except for all the others)(a) |
Q49964016 | The RNA-splicing endonuclease from the euryarchaeaon Methanopyrus kandleri is a heterotetramer with constrained substrate specificity |
Q57808741 | Transfer RNA Modification Enzymes from Thermophiles and Their Modified Nucleosides in tRNA |
Q36922474 | Transfer RNA modifications: nature's combinatorial chemistry playground. |
Q33551879 | Transfer RNA processing in archaea: unusual pathways and enzymes |
Q37799569 | When you can’t trust the DNA: RNA editing changes transcript sequences |
Q29616318 | tRNA biology charges to the front |
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