Affiliation:
1. Department of Biology, Indiana University, Bloomington, IN USA
Abstract
ABSTRACT
Translation elongation factor P (EF-P) is conserved in all three domains of life (called eIF5A and aIF5A in eukaryotes and archaea, respectively) and functions to alleviate ribosome pausing during the translation of specific sequences, including consecutive proline residues. EF-P was identified in 1975 as a factor that stimulated the peptidyltransferase reaction in vitro but its involvement in the translation of tandem proline residues was not uncovered until 2013. Throughout the four decades of EF-P research, perceptions of EF-P function have changed dramatically. In particular, while EF-P was thought to potentiate the formation of the first peptide bond in a protein, it is now broadly accepted to act throughout translation elongation. Further, EF-P was initially reported to be essential, but recent work has shown that the requirement of EF-P for growth is conditional. Finally, it is thought that post-translational modification of EF-P is strictly required for its function but recent studies suggest that EF-P modification may play a more nuanced role in EF-P activity. Here, we review the history of EF-P research, with an emphasis on its initial isolation and characterization as well as the discoveries that altered our perceptions of its function.
Funder
National Science Foundation
National Institutes of Health
Publisher
Oxford University Press (OUP)
Subject
Infectious Diseases,Microbiology
Reference100 articles.
1. International symposium on protein synthesis: summary of Fogarty Center-NIH workshop held in Bathesda, Maryland, on 18–20 October, 1976;Anderson;FEBS Lett,1977
2. Cloning, sequencing and overexpression of the gene for prokaryotic factor EF-P involved in peptide bond synthesis;Aoki;Nucleic Acid Res,1991
3. The gene encoding the elongation factor P protein is essential for viability and is required for protein synthesis;Aoki;J Biol Chem,1997
4. Interactions of elongation factor EF-P with the Escherichia coli ribosome;Aoki;FEBS J,2008
5. Construction of Escherichia coli K-12 in-frame, single-gene knockout mutants: the Keio collection;Baba;Mol Syst Bio,2006
Cited by
27 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献