Ribosome-induced changes in elongation factor Tu conformation control GTP hydrolysis

In translation, elongation factor Tu (EF-Tu) molecules deliver aminoacyl-tRNAs to the mRNA-programmed ribosome. The GTPase activity of EF-Tu is triggered by ribosome-induced conformational changes of the factor that play a pivotal role in the selection of the cognate aminoacyl-tRNAs. We present a 6....

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2009-01, Vol.106 (4), p.1063-1068
Hauptverfasser: Villa, Elizabeth, Sengupta, Jayati, Trabuco, Leonardo G, LeBarron, Jamie, Baxter, William T, Shaikh, Tanvir R, Grassucci, Robert A, Nissen, Poul, Ehrenberg, Måns, Schulten, Klaus, Frank, Joachim
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Sprache:eng
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Zusammenfassung:In translation, elongation factor Tu (EF-Tu) molecules deliver aminoacyl-tRNAs to the mRNA-programmed ribosome. The GTPase activity of EF-Tu is triggered by ribosome-induced conformational changes of the factor that play a pivotal role in the selection of the cognate aminoacyl-tRNAs. We present a 6.7-Å cryo-electron microscopy map of the aminoacyl-tRNA·EF-Tu·GDP·kirromycin-bound Escherichia coli ribosome, together with an atomic model of the complex obtained through molecular dynamics flexible fitting. The model reveals the conformational changes in the conserved GTPase switch regions of EF-Tu that trigger hydrolysis of GTP, along with key interactions, including those between the sarcin-ricin loop and the P loop of EF-Tu, and between the effector loop of EF-Tu and a conserved region of the 16S rRNA. Our data suggest that GTP hydrolysis on EF-Tu is controlled through a hydrophobic gate mechanism.
ISSN:0027-8424
1091-6490
1091-6490
DOI:10.1073/pnas.0811370106