Literature DB >> 15101974

Specific recognition of rpsO mRNA and 16S rRNA by Escherichia coli ribosomal protein S15 relies on both mimicry and site differentiation.

Nathalie Mathy1, Olivier Pellegrini, Alexander Serganov, Dinshaw J Patel, Chantal Ehresmann, Claude Portier.   

Abstract

The ribosomal protein S15 binds to 16S rRNA, during ribosome assembly, and to its own mRNA (rpsO mRNA), affecting autocontrol of its expression. In both cases, the RNA binding site is bipartite with a common subsite consisting of a G*U/G-C motif. The second subsite is located in a three-way junction in 16S rRNA and in the distal part of a stem forming a pseudoknot in Escherichia coli rpsO mRNA. To determine the extent of mimicry between these two RNA targets, we determined which amino acids interact with rpsO mRNA. A plasmid carrying rpsO (the S15 gene) was mutagenized and introduced into a strain lacking S15 and harbouring an rpsO-lacZ translational fusion. Analysis of deregulated mutants shows that each subsite of rpsO mRNA is recognized by a set of amino acids known to interact with 16S rRNA. In addition to the G*U/G-C motif, which is recognized by the same amino acids in both targets, the other subsite interacts with amino acids also involved in contacts with helix H22 of 16S rRNA, in the region adjacent to the three-way junction. However, specific S15-rpsO mRNA interactions can also be found, probably with A(-46) in loop L1 of the pseudoknot, demonstrating that mimicry between the two targets is limited.

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Year:  2004        PMID: 15101974      PMCID: PMC4693643          DOI: 10.1111/j.1365-2958.2004.04005.x

Source DB:  PubMed          Journal:  Mol Microbiol        ISSN: 0950-382X            Impact factor:   3.501


  38 in total

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Journal:  Nat Struct Biol       Date:  2002-05

Review 2.  Bacterial translational control at atomic resolution.

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4.  Ribosomal protein S15 from Thermus thermophilus--cloning, sequencing, overexpression of the gene and RNA-binding properties of the protein.

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Authors:  C Philippe; C Portier; M Mougel; M Grunberg-Manago; J P Ebel; B Ehresmann; C Ehresmann
Journal:  J Mol Biol       Date:  1990-01-20       Impact factor: 5.469

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7.  Ribosomal protein L4 from Escherichia coli utilizes nonidentical determinants for its structural and regulatory functions.

Authors:  X Li; L Lindahl; J M Zengel
Journal:  RNA       Date:  1996-01       Impact factor: 4.942

8.  Mutational analysis of the pseudoknot structure of the S15 translational operator from Escherichia coli.

Authors:  L Bénard; C Philippe; L Dondon; M Grunberg-Manago; B Ehresmann; C Ehresmann; C Portier
Journal:  Mol Microbiol       Date:  1994-10       Impact factor: 3.501

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  18 in total

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Review 2.  Towards deciphering the principles underlying an mRNA recognition code.

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Authors:  Leonid V Aseev; Alexandrina A Levandovskaya; Ludmila S Tchufistova; Nadezda V Scaptsova; Irina V Boni
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Review 4.  Ribosome biogenesis and the translation process in Escherichia coli.

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Review 5.  Structure and function of pseudoknots involved in gene expression control.

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Journal:  Wiley Interdiscip Rev RNA       Date:  2014-07-08       Impact factor: 9.957

6.  Processing and stability of inducibly expressed rpsO mRNA derivatives in Bacillus subtilis.

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7.  Changes in translational efficiency is a dominant regulatory mechanism in the environmental response of bacteria.

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8.  Regulation of the rplY gene encoding 5S rRNA binding protein L25 in Escherichia coli and related bacteria.

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Journal:  RNA       Date:  2015-03-06       Impact factor: 4.942

9.  Hfq affects mRNA levels independently of degradation.

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10.  Co-evolution of Bacterial Ribosomal Protein S15 with Diverse mRNA Regulatory Structures.

Authors:  Betty L Slinger; Hunter Newman; Younghan Lee; Shermin Pei; Michelle M Meyer
Journal:  PLoS Genet       Date:  2015-12-16       Impact factor: 5.917

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