Enhancing microbial electrosynthesis of fatty acids from carbon dioxide by combining bioaugmentation of an acetogenic enrichment and Fe-Sn oxide cathode coating. [PDF]
Mihin T +3 more
europepmc +1 more source
Selection of initiator tRNA and start codon by mammalian mitochondrial initiation factor 3 in leaderless mRNA translation. [PDF]
Lee M +10 more
europepmc +1 more source
Neurotrophic keratopathy in childhood: advances in understanding of pathogenesis and management. [PDF]
Jiang J, Ashton CBJ, Larkin DFP.
europepmc +1 more source
Physiological significance of the two isoforms of initiator tRNAs in <i>Escherichia coli</i>. [PDF]
Sahu AK +9 more
europepmc +1 more source
Structural insights into the Urm1-Uba4 pathway and its biological roles. [PDF]
Kwasna D +3 more
europepmc +1 more source
Genome-resolved metagenomic survey of 500 samples from 56 hot springs across the Western US. [PDF]
Korchagina MV +12 more
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A coordinated codon-dependent regulation of translation by Elongator
More than a decade ago, the purification of the form of the RNA polymerase II (PolII) engaged in elongation led to the discovery of an associated, multi-subunit (Elp1-6) complex named “Elongator” by the Svejstrup lab.
Damien Hermand, Fanelie France Bauer
exaly +2 more sources
Architecture of the yeast Elongator complex [PDF]
The highly conserved eukaryotic Elongator complex performs specific chemical modifications on wobble base uridines of tRNAs, which are essential for proteome stability and homeostasis.
Karin Breunig +2 more
exaly +4 more sources
How Elongator Acetylates tRNA Bases [PDF]
Elp3, the catalytic subunit of the eukaryotic Elongator complex, is a lysine acetyltransferase that acetylates the C5 position of wobble-base uridines (U34) in transfer RNAs (tRNAs). This Elongator-dependent RNA acetylation of anticodon bases affects the
Anna Biela +2 more
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Cell Biology International, 2003The epidermis is often considered to be the growthlimiting cell layer in young, growing herbaceous plants (Niklas, 1992). In his classic work, Green (1980) elaborated this idea further for organ development, and attributed a crucial role to the orientation of cellulose fibrils as indicator of mechanical properties.
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