Published in Cell on July 11, 2003
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Aminoglycoside activity observed on single pre-translocation ribosome complexes. Nat Chem Biol (2010) 0.83
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A 16S rRNA-tRNA product containing a nucleotide phototrimer and specific for tRNA in the P/E hybrid state in the Escherichia coli ribosome. Nucleic Acids Res (2004) 0.81
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Locking and unlocking of ribosomal motions. Cell (2003) 6.59
The bacterial toxin RelE displays codon-specific cleavage of mRNAs in the ribosomal A site. Cell (2003) 6.01
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The cryo-EM structure of a translation initiation complex from Escherichia coli. Cell (2005) 2.91
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Fast evaluation of fluctuations in biochemical networks with the linear noise approximation. Genome Res (2003) 2.63
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The hemK gene in Escherichia coli encodes the N(5)-glutamine methyltransferase that modifies peptide release factors. EMBO J (2002) 2.37
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Slow peptide bond formation by proline and other N-alkylamino acids in translation. Proc Natl Acad Sci U S A (2008) 2.11
Release of peptide promoted by the GGQ motif of class 1 release factors regulates the GTPase activity of RF3. Mol Cell (2002) 1.98
Near-critical phenomena in intracellular metabolite pools. Biophys J (2003) 1.92
RF3 induces ribosomal conformational changes responsible for dissociation of class I release factors. Cell (2007) 1.89
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How initiation factors maximize the accuracy of tRNA selection in initiation of bacterial protein synthesis. Mol Cell (2006) 1.58
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The SAXS solution structure of RF1 differs from its crystal structure and is similar to its ribosome bound cryo-EM structure. Mol Cell (2005) 1.53
The role of tRNA as a molecular spring in decoding, accommodation, and peptidyl transfer. FEBS Lett (2005) 1.52
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Interplay of signal recognition particle and trigger factor at L23 near the nascent chain exit site on the Escherichia coli ribosome. J Cell Biol (2003) 1.45
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The essential role of the invariant GGQ motif in the function and stability in vivo of bacterial release factors RF1 and RF2. Mol Microbiol (2003) 1.29
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The molecular mechanism of peptide-mediated erythromycin resistance. J Biol Chem (2006) 0.92
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