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Programmed –1 frameshifting by kinetic partitioning during impeded translocation. Cell 102.
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Interplay between trigger factor and other protein biogenesis factors on the ribosome. Nature Communications 103.
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GTP hydrolysis by EF‐G synchronizes tRNA movement on small and large ribosomal subunits. EMBO Journal 104.
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42 (3), pp. 1812 - 1820 (2014)
Timing of GTP binding and hydrolysis by translation termination factor RF3. Nucleic Acids Research 105.
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Energy barriers and driving forces in tRNA translocation through the ribosome. Nature Structural and Molecular Biology 106.
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Elongation factor P: Function and effects on bacterial fitness. Biopolymers 107.
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A kinetic safety gate controlling the delivery of unnatural amino acids to the ribosome. Journal of the American Chemical Society 108.
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23 (4), pp. 595 - 602 (2013)
The ribosome as a versatile catalyst: Reactions at the peptidyl transferase center. Current Opinion in Structural Biology 109.
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110 (30), pp. 12289 - 12294 (2013)
tRNA tKUUU, tQUUG, and tEUUC wobble position modifications fine-tune protein translation by promoting ribosome A-site binding. Proceedings of the National Academy of Sciences of the United States of America 110.
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Translocation in action. Science 111.
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Dual use of GTP hydrolysis by elongation factor G on the ribosome. Translation 112.
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Evolution of the protein stoichiometry in the L12 stalk of bacterial and organellar ribosomes. Nature Communications 113.
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EF-P is essential for rapid synthesis of proteins containing consecutive proline residues. Science 114.
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Dynamic switch of the signal recognition particle from scanning to targeting. Nature Structural and Molecular Biology 115.
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Novel insights into the architecture and protein interaction network of yeast eIF3. RNA 116.
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Thermodynamics of the GTP-GDP operated conformational switch of selenocysteine-specific translation factor SelB. Journal of Biological Chemistry 117.
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47 (4), pp. 334 - 348 (2012)
Kinetic control of translation initiation in bacteria. Critical Reviews in Biochemistry and Molecular Biology 118.
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Impact of methylations of m2G966/m5C967 in 16S rRNA on bacterial fitness and translation initiation. Nucleic Acids Research 119.
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Ribosome clearance by FusB-type proteins mediates resistance to the antibiotic fusidic acid. Proceedings of the National Academy of Sciences of the United States of America 120.
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Real-time assembly landscape of bacterial 30S translation initiation complex. Nature Structural and Molecular Biology 121.
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6 (12), e29525 (2011)
Aminoacyl-tRNA-charged eukaryotic elongation factor 1A is the bona fide substrate for legionella pneumophila effector glucosyltransferases. PLoS One 122.
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366 (1580), pp. 2979 - 2986 (2011)
Evolutionary optimization of speed and accuracy of decoding on the ribosome. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences 123.
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The structure of helix 89 of 23S rRNA is important for peptidyl transferase function of Escherichia coli ribosome. FEBS Letters 124.
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476, pp. 351 - 354 (2011)
Different substrate-dependent transition states in the active site of the ribosome. Nature 125.
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9 (7), e1001095 (2011)
The cryo-EM structure of a complete 30S translation initiation complex from Escherichia coli. PLoS Biology 126.
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286 (10), pp. 8158 - 8164 (2011)
Distortion of tRNA upon near-cognate codon recognition on the ribosome. Journal of Biological Chemistry 127.
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39, pp. 658 - 662 (2011)
The ribosome as a molecular machine: The mechanism of tRNA–mRNA movement in translocation. Biochemical Society Transactions 128.
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Genauigkeit und Geschwindigkeit der Proteinsynthese. Biospektrum 129.
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29 (21), pp. 3701 - 3709 (2010)
Optimization of speed and accuracy of decoding in translation. The EMBO Journal 130.
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11 (4), pp. 312 - 316 (2010)
The ribosome-bound initiation factor 2 recruits initiator tRNA to the 30S initiation complex. EMBO Reports 131.
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11 (3), pp. 143 - 144 (2010)
Protein synthesis meets ABC ATPases: new roles for Rli1/ABCE1. EMBO Reports 132.
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285 (5), pp. 3014 - 3020 (2010)
Thermodynamic and kinetic framework of selenocysteyl-tRNA(Sec) recognition by elongation factor SelB. The Journal of Biological Chemistry 133.
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16 (9), pp. 1848 - 1853 (2010)
Mutations at the accommodation gate of the ribosome impair RF2-dependent translation termination. RNA 134.
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38 (12), pp. 4154 - 4162 (2010)
The crystal structure of unmodified tRNAPhe from Escherichia coli. Nucleic Acids Research 135.
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Ribosome dynamics and tRNA movement by time-resolved electron cryomicroscopy. Nature 136.
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35 (1), pp. 1 - 5 (2010)
The ribosome goes Nobel. Trends in Biochemical Sciences 137.
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Recent mechanistic insight into eukaryotic ribosomes. Current Opinion in Cell Biology 138.
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Distinct functions of elongation factor G in ribosome recycling and translocation. RNA 139.
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28 (6), pp. 619 - 620 (2009)
Long-range signalling in activation of the translational GTPase EF-Tu. EMBO Journal 140.
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Visualizing the protein synthesis machinery: New focus on the translational GTPase elongation factor Tu. Proceedings of the National Academy of Sciences of the United States of America 141.
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Conformation of the signal recognition particle in ribosomal targeting complexes. RNA 142.
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283 (47), pp. 32229 - 32235 (2008)
Modulation of the rate of peptidyl transfer on the ribosome by the nature of substrates. Journal of Biological Chemistry 143.
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47 (34), pp. 8828 - 8839 (2008)
Conservation of bacterial protein synthesis machinery: initiation and elongation in mycobacterium smegmatis. Biochemistry 144.
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69 (2), pp. 390 - 401 (2008)
Colicin E3 cleavage of 16S rRNA impairs decoding and accelerates tRNA translocation on Escherichia coli ribosomes. Molecular Microbiology 145.
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30 (6), pp. 712 - 720 (2008)
Kinetic checkpoint at a late step in translation initiation. Molecular Cell 146.
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15 (5), pp. 493 - 500 (2008)
An uncharged amine in the transition state of the ribosornal peptidyl transfer reaction. Chemistry and Biology 147.
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Signal sequence–independent membrane targeting of ribosomes containing short nascent peptides within the exit tunnel. Nature Structural and Molecular Biology 148.
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105 (44), pp. 16924 - 16927 (2008)
Structure of ratcheted ribosomes with tRNAs in hybrid states. Proceedings of the National Academy of Sciences of the United States of America 149.
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388 (10), pp. 1061 - 1067 (2007)
Towards understanding selenocysteine incorporation into bacterial proteins. Biological Chemistry 150.
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388 (7), pp. 687 - 691 (2007)
Importance of tRNA interactions with 23S rRNA for peptide bond formation on the ribosome: studies with substrate analogs. Biological Chemistry