Literature DB >> 22279149

Role of helix 44 of 16S rRNA in the fidelity of translation initiation.

Daoming Qin1, Qi Liu, Aishwarya Devaraj, Kurt Fredrick.   

Abstract

The molecular mechanisms that govern translation initiation to ensure accuracy remain unclear. Here, we provide evidence that the subunit-joining step of initiation is controlled in part by a conformational change in the 1408 region of helix h44. First, chemical probing of 30S initiation complexes formed with either a cognate (AUG) or near-cognate (AUC) start codon shows that an IF1-dependent enhancement at A1408 is reduced in the presence of AUG. This change in reactivity is due to a conformational change rather than loss of IF1, because other portions of the IF1 footprint are unchanged and high concentrations of IF1 fail to diminish the reactivity difference seen at A1408. Second, mutations in h44 such as A1413C stimulate 50S docking and cause reduced reactivity at A1408. Third, streptomycin, which has been shown by Rodnina and coworkers to stimulate 50S docking by reversing the inhibitory effects of IF1, also causes reduced reactivity at A1408. Collectively, these data support a model in which IF1 alters the A1408 region of h44 in a way that makes 50S docking unfavorable, and canonical codon-anticodon pairing in the P site restores h44 to a docking-favorable conformation. We also find that, in the absence of factors, the cognate 30S•AUG•fMet-tRNA ternary complex is >1000-fold more stable than the near-cognate 30S•AUC•fMet-tRNA complex. Hence, the selectivity of ternary complex formation is inherently high, exceeding that of initiation in vivo by more than 10-fold.

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Year:  2012        PMID: 22279149      PMCID: PMC3285936          DOI: 10.1261/rna.031203.111

Source DB:  PubMed          Journal:  RNA        ISSN: 1355-8382            Impact factor:   4.942


  38 in total

1.  Altered discrimination of start codons and initiator tRNAs by mutant initiation factor 3.

Authors:  M O'Connor; S T Gregory; U L Rajbhandary; A E Dahlberg
Journal:  RNA       Date:  2001-07       Impact factor: 4.942

2.  Accurate translocation of mRNA by the ribosome requires a peptidyl group or its analog on the tRNA moving into the 30S P site.

Authors:  Kurt Fredrick; Harry F Noller
Journal:  Mol Cell       Date:  2002-05       Impact factor: 17.970

3.  Contribution of the esterified amino acid to the binding of aminoacylated tRNAs to the ribosomal P- and A-sites.

Authors:  Richard P Fahlman; Olke C Uhlenbeck
Journal:  Biochemistry       Date:  2004-06-15       Impact factor: 3.162

4.  Activation of initiation factor 2 by ligands and mutations for rapid docking of ribosomal subunits.

Authors:  Michael Y Pavlov; Anna Zorzet; Dan I Andersson; Måns Ehrenberg
Journal:  EMBO J       Date:  2010-12-10       Impact factor: 11.598

5.  How initiation factors tune the rate of initiation of protein synthesis in bacteria.

Authors:  Ayman Antoun; Michael Y Pavlov; Martin Lovmar; Måns Ehrenberg
Journal:  EMBO J       Date:  2006-05-25       Impact factor: 11.598

6.  Binding of tRNA to the ribosomal A and P sites protects two distinct sets of nucleotides in 16 S rRNA.

Authors:  D Moazed; H F Noller
Journal:  J Mol Biol       Date:  1990-01-05       Impact factor: 5.469

7.  Kinetic checkpoint at a late step in translation initiation.

Authors:  Pohl Milon; Andrey L Konevega; Claudio O Gualerzi; Marina V Rodnina
Journal:  Mol Cell       Date:  2008-06-20       Impact factor: 17.970

8.  The ribosome-bound initiation factor 2 recruits initiator tRNA to the 30S initiation complex.

Authors:  Pohl Milon; Marcello Carotti; Andrey L Konevega; Wolfgang Wintermeyer; Marina V Rodnina; Claudio O Gualerzi
Journal:  EMBO Rep       Date:  2010-03-12       Impact factor: 8.807

9.  The roles of initiation factor 2 and guanosine triphosphate in initiation of protein synthesis.

Authors:  Ayman Antoun; Michael Y Pavlov; Kerstin Andersson; Tanel Tenson; Måns Ehrenberg
Journal:  EMBO J       Date:  2003-10-15       Impact factor: 11.598

10.  Control of translation initiation involves a factor-induced rearrangement of helix 44 of 16S ribosomal RNA.

Authors:  Daoming Qin; Kurt Fredrick
Journal:  Mol Microbiol       Date:  2009-01-16       Impact factor: 3.501

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  17 in total

1.  Roles of helix H69 of 23S rRNA in translation initiation.

Authors:  Qi Liu; Kurt Fredrick
Journal:  Proc Natl Acad Sci U S A       Date:  2015-08-31       Impact factor: 11.205

2.  IF2 and unique features of initiator tRNAfMet help establish the translational reading frame.

Authors:  Bappaditya Roy; Qi Liu; Shinichiro Shoji; Kurt Fredrick
Journal:  RNA Biol       Date:  2017-11-13       Impact factor: 4.652

3.  Ribosomal initiation complex-driven changes in the stability and dynamics of initiation factor 2 regulate the fidelity of translation initiation.

Authors:  Jiangning Wang; Kelvin Caban; Ruben L Gonzalez
Journal:  J Mol Biol       Date:  2015-01-14       Impact factor: 5.469

Review 4.  The emerging role of rectified thermal fluctuations in initiator aa-tRNA- and start codon selection during translation initiation.

Authors:  Kelvin Caban; Ruben L Gonzalez
Journal:  Biochimie       Date:  2015-04-14       Impact factor: 4.079

Review 5.  Intersubunit Bridges of the Bacterial Ribosome.

Authors:  Qi Liu; Kurt Fredrick
Journal:  J Mol Biol       Date:  2016-02-13       Impact factor: 5.469

6.  Ribosome assembly defects subvert initiation Factor3 mediated scrutiny of bona fide start signal.

Authors:  Himanshu Sharma; B Anand
Journal:  Nucleic Acids Res       Date:  2019-12-02       Impact factor: 16.971

7.  Assembly constraints drive co-evolution among ribosomal constituents.

Authors:  Saurav Mallik; Hiroshi Akashi; Sudip Kundu
Journal:  Nucleic Acids Res       Date:  2015-05-08       Impact factor: 16.971

8.  The antibiotic Furvina® targets the P-site of 30S ribosomal subunits and inhibits translation initiation displaying start codon bias.

Authors:  Attilio Fabbretti; Letizia Brandi; Dezemona Petrelli; Cynthia L Pon; Nilo R Castañedo; Ricardo Medina; Claudio O Gualerzi
Journal:  Nucleic Acids Res       Date:  2012-08-31       Impact factor: 16.971

9.  A structural basis for streptomycin-induced misreading of the genetic code.

Authors:  Hasan Demirci; Frank Murphy; Eileen Murphy; Steven T Gregory; Albert E Dahlberg; Gerwald Jogl
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

Review 10.  RNA methyltransferase METTL16: Targets and function.

Authors:  Emily R Satterwhite; Kyle D Mansfield
Journal:  Wiley Interdiscip Rev RNA       Date:  2021-07-06       Impact factor: 9.349

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