Title of article :
The Translation Initiation Functions of IF2: Targets for Thiostrepton Inhibition
Author/Authors :
Letizia Brandi، نويسنده , , Stefano Marzi، نويسنده , , Attilio Fabbretti، نويسنده , , Carola Fleischer، نويسنده , , Walter E. Hill، نويسنده , , Claudio O. Gualerzi، نويسنده , , J. Stephen Lodmell، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
14
From page :
881
To page :
894
Abstract :
Bacterial translation initiation factor IF2 was localized on the ribosome by rRNA cleavage using free Cu(II):1,10-orthophenanthroline. The results indicated proximity of IF2 to helix 89, to the sarcin–ricin loop and to helices 43 and 44, which constitute the “L11/thiostrepton” stem-loops of 23 S rRNA. These findings prompted an investigation of the L11 contribution to IF2 activity and a re-examination of the controversial issue of the effect on IF2 functions of thiostrepton, a peptide antibiotic known primarily as a powerful inhibitor of translocation. Ribosomes lacking L11 were found to have wild-type capacity to bind IF2 but a strongly reduced ability to elicit its GTPase activity. We found that thiostrepton caused a faster recycling of this factor on and off the 70 S ribosomes and 50 S subunits, which in turn resulted in an increased rate of the multiple turnover IF2-dependent GTPase. Although thiostrepton did not inhibit the P-site binding of fMet-tRNA, the A-site binding of the EF-Tu-GTP-Phe-tRNA or the activity of the ribosomal peptidyl transferase center (as measured by the formation of fMet-puromycin), it severely inhibited IF2-dependent initiation dipeptide formation. This inhibition can probably be traced back to a thiostrepton-induced distortion of the ribosomal-binding site of IF2, which leads to a non-productive interaction between the ribosome and the aminoacyl-tRNA substrates of the peptidyl transferase reaction. Overall, our data indicate that the translation initiation function of IF2 is as sensitive as the translocation function of EF-G to thiostrepton inhibition.
Keywords :
translation initiation , antibiotic inhibition , chemical Rnase , ribosomal topography , ribosomal protein L11
Journal title :
Journal of Molecular Biology
Serial Year :
2004
Journal title :
Journal of Molecular Biology
Record number :
1243308
Link To Document :
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