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Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G

The ribosomal stalk in bacteria is composed of four or six copies of L12 proteins arranged in dimers that bind to the adjacent sites on protein L10, spanning 10 amino acids each from the L10 C-terminus. To study why multiple L12 dimers are required on the ribosome, we created a chromosomally enginee...

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Autores principales: Mandava, Chandra Sekhar, Peisker, Kristin, Ederth, Josefine, Kumar, Ranjeet, Ge, Xueliang, Szaflarski, Witold, Sanyal, Suparna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3299993/
https://www.ncbi.nlm.nih.gov/pubmed/22102582
http://dx.doi.org/10.1093/nar/gkr1031
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author Mandava, Chandra Sekhar
Peisker, Kristin
Ederth, Josefine
Kumar, Ranjeet
Ge, Xueliang
Szaflarski, Witold
Sanyal, Suparna
author_facet Mandava, Chandra Sekhar
Peisker, Kristin
Ederth, Josefine
Kumar, Ranjeet
Ge, Xueliang
Szaflarski, Witold
Sanyal, Suparna
author_sort Mandava, Chandra Sekhar
collection PubMed
description The ribosomal stalk in bacteria is composed of four or six copies of L12 proteins arranged in dimers that bind to the adjacent sites on protein L10, spanning 10 amino acids each from the L10 C-terminus. To study why multiple L12 dimers are required on the ribosome, we created a chromosomally engineered Escherichia coli strain, JE105, in which the peripheral L12 dimer binding site was deleted. Thus JE105 harbors ribosomes with only a single L12 dimer. Compared to MG1655, the parental strain with two L12 dimers, JE105 showed significant growth defect suggesting suboptimal function of the ribosomes with one L12 dimer. When tested in a cell-free reconstituted transcription–translation assay the synthesis of a full-length protein, firefly luciferase, was notably slower with JE105 70S ribosomes and 50S subunits. Further, in vitro analysis by fast kinetics revealed that single L12 dimer ribosomes from JE105 are defective in two major steps of translation, namely initiation and elongation involving translational GTPases IF2 and EF-G. Varying number of L12 dimers on the ribosome can be a mechanism in bacteria for modulating the rate of translation in response to growth condition.
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spelling pubmed-32999932012-03-13 Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G Mandava, Chandra Sekhar Peisker, Kristin Ederth, Josefine Kumar, Ranjeet Ge, Xueliang Szaflarski, Witold Sanyal, Suparna Nucleic Acids Res Molecular Biology The ribosomal stalk in bacteria is composed of four or six copies of L12 proteins arranged in dimers that bind to the adjacent sites on protein L10, spanning 10 amino acids each from the L10 C-terminus. To study why multiple L12 dimers are required on the ribosome, we created a chromosomally engineered Escherichia coli strain, JE105, in which the peripheral L12 dimer binding site was deleted. Thus JE105 harbors ribosomes with only a single L12 dimer. Compared to MG1655, the parental strain with two L12 dimers, JE105 showed significant growth defect suggesting suboptimal function of the ribosomes with one L12 dimer. When tested in a cell-free reconstituted transcription–translation assay the synthesis of a full-length protein, firefly luciferase, was notably slower with JE105 70S ribosomes and 50S subunits. Further, in vitro analysis by fast kinetics revealed that single L12 dimer ribosomes from JE105 are defective in two major steps of translation, namely initiation and elongation involving translational GTPases IF2 and EF-G. Varying number of L12 dimers on the ribosome can be a mechanism in bacteria for modulating the rate of translation in response to growth condition. Oxford University Press 2012-03 2011-11-17 /pmc/articles/PMC3299993/ /pubmed/22102582 http://dx.doi.org/10.1093/nar/gkr1031 Text en © The Author(s) 2011. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Mandava, Chandra Sekhar
Peisker, Kristin
Ederth, Josefine
Kumar, Ranjeet
Ge, Xueliang
Szaflarski, Witold
Sanyal, Suparna
Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title_full Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title_fullStr Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title_full_unstemmed Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title_short Bacterial ribosome requires multiple L12 dimers for efficient initiation and elongation of protein synthesis involving IF2 and EF-G
title_sort bacterial ribosome requires multiple l12 dimers for efficient initiation and elongation of protein synthesis involving if2 and ef-g
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3299993/
https://www.ncbi.nlm.nih.gov/pubmed/22102582
http://dx.doi.org/10.1093/nar/gkr1031
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