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Identification of Elongation Factor G as the Conserved Cellular Target of Argyrin B.

Authors :
Nyfeler, Beat
Hoepfner, Dominic
Palestrant, Deborah
Kirby, Christina A.
Whitehead, Lewis
Yu, Robert
Gejing Deng
Caughlan, Ruth E.
Woods, Angela L.
Jones, Adriana K.
Barnes, S. Whitney
Walker, John R.
Gaulis, Swann
Hauy, Ervan
Brachmann, Saskia M.
Krastel, Philipp
Studer, Christian
Riedl, Ralph
Estoppey, David
Aust, Thomas
Source :
PLoS ONE; Sep2012, Vol. 7 Issue 9, Special section p1-12, 12p
Publication Year :
2012

Abstract

Argyrins, produced by myxobacteria and actinomycetes, are cyclic octapeptides with antibacterial and antitumor activity. Here, we identify elongation factor G (EF-G) as the cellular target of argyrin B in bacteria, via resistant mutant selection and whole genome sequencing, biophysical binding studies and crystallography. Argyrin B binds a novel allosteric pocket in EFG, distinct from the known EF-G inhibitor antibiotic fusidic acid, revealing a new mode of protein synthesis inhibition. In eukaryotic cells, argyrin B was found to target mitochondrial elongation factor G1 (EF-G1), the closest homologue of bacterial EF-G. By blocking mitochondrial translation, argyrin B depletes electron transport components and inhibits the growth of yeast and tumor cells. Further supporting direct inhibition of EF-G1, expression of an argyrin B-binding deficient EF-G1 L693Q variant partially rescued argyrin B-sensitivity in tumor cells. In summary, we show that argyrin B is an antibacterial and cytotoxic agent that inhibits the evolutionarily conserved target EF-G, blocking protein synthesis in bacteria and mitochondrial translation in yeast and mammalian cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19326203
Volume :
7
Issue :
9
Database :
Complementary Index
Journal :
PLoS ONE
Publication Type :
Academic Journal
Accession number :
82445936
Full Text :
https://doi.org/10.1371/journal.pone.0042657