Literature DB >> 23277358

(R)-β-lysine-modified elongation factor P functions in translation elongation.

Tammy J Bullwinkle1, S Betty Zou, Andrei Rajkovic, Steven J Hersch, Sara Elgamal, Nathaniel Robinson, David Smil, Yuri Bolshan, William Wiley Navarre, Michael Ibba.   

Abstract

Post-translational modification of bacterial elongation factor P (EF-P) with (R)-β-lysine at a conserved lysine residue activates the protein in vivo and increases puromycin reactivity of the ribosome in vitro. The additional hydroxylation of EF-P at the same lysine residue by the YfcM protein has also recently been described. The roles of modified and unmodified EF-P during different steps in translation, and how this correlates to its physiological role in the cell, have recently been linked to the synthesis of polyproline stretches in proteins. Polysome analysis indicated that EF-P functions in translation elongation, rather than initiation as proposed previously. This was further supported by the inability of EF-P to enhance the rate of formation of fMet-Lys or fMet-Phe, indicating that the role of EF-P is not to specifically stimulate formation of the first peptide bond. Investigation of hydroxyl-(β)-lysyl-EF-P showed 30% increased puromycin reactivity but no differences in dipeptide synthesis rates when compared with the β-lysylated form. Unlike disruption of the other genes required for EF-P modification, deletion of yfcM had no phenotypic consequences in Salmonella. Taken together, our findings indicate that EF-P functions in translation elongation, a role critically dependent on post-translational β-lysylation but not hydroxylation.

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Year:  2012        PMID: 23277358      PMCID: PMC3567691          DOI: 10.1074/jbc.M112.438879

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  33 in total

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Journal:  Science       Date:  2012-12-13       Impact factor: 47.728

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Journal:  Science       Date:  2012-12-13       Impact factor: 47.728

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8.  Cloning, sequencing and overexpression of the gene for prokaryotic factor EF-P involved in peptide bond synthesis.

Authors:  H Aoki; S L Adams; D G Chung; M Yaguchi; S E Chuang; M C Ganoza
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9.  Divergence in noncognate amino acid recognition between class I and class II lysyl-tRNA synthetases.

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  30 in total

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5.  Importance of a tRNA anticodon loop modification and a conserved, noncanonical anticodon stem pairing in tRNACGGProfor decoding

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8.  Translation initiation rate determines the impact of ribosome stalling on bacterial protein synthesis.

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Review 9.  Rewiring protein synthesis: From natural to synthetic amino acids.

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10.  Arginine-rhamnosylation as new strategy to activate translation elongation factor P.

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