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Kinetics and Thermodynamics of RRF, EF-G, and Thiostrepton Interaction on the Escherichia coli Ribosome

Authors :
Dongli Pan
V. Samuel Raj
Michael C. Kiel
and Akira Kaji
Barry S. Cooperman
Hyuk-Soo Seo
Source :
Biochemistry. 43:12728-12740
Publication Year :
2004
Publisher :
American Chemical Society (ACS), 2004.

Abstract

Ribosome recycling factor (RRF) and elongation factor-G (EF-G) are jointly essential for recycling bacterial ribosomes following termination of protein synthesis. Here we present equilibrium and rapid kinetic measurements permitting formulation of a minimal kinetic scheme that accounts quantitatively for RRF and EF-G interaction on the Escherichia coli ribosome. RRF and EF-G (a) each form a binary complex on binding to a bare ribosome which undergoes isomerization to a more stable complex, (b) form mixed ternary complexes on the ribosome in which the affinity for each factor is considerably lower than its affinity for binding to a bare ribosome, and (c) each bind to two sites per ribosome, with EF-G having considerably higher second-site affinity than RRF. Addition of EF-G to the ribosome-RRF complex induces rapid RRF dissociation, at a rate compatible with the rate of ribosome recycling in vivo, but added RRF does not increase the lability of ribosome-bound EF-G. Added thiostrepton slows the initial binding of EF-G, and prevents both formation of the more stable EF-G complex and EF-G-induced RRF dissociation. These findings are relevant for the mechanism of post-termination complex disassembly.

Details

ISSN :
15204995 and 00062960
Volume :
43
Database :
OpenAIRE
Journal :
Biochemistry
Accession number :
edsair.doi.dedup.....317bdf958eed1fd09b4b8b40d6604e45
Full Text :
https://doi.org/10.1021/bi048927p