Literature DB >> 26170236

Chromosomal position shift of a regulatory gene alters the bacterial phenotype.

Veneta Gerganova1, Michael Berger2, Elisabed Zaldastanishvili1, Patrick Sobetzko3, Corinne Lafon4, Michael Mourez4, Andrew Travers5, Georgi Muskhelishvili6.   

Abstract

Recent studies strongly suggest that in bacterial cells the order of genes along the chromosomal origin-to-terminus axis is determinative for regulation of the growth phase-dependent gene expression. The prediction from this observation is that positional displacement of pleiotropic genes will affect the genetic regulation and hence, the cellular phenotype. To test this prediction we inserted the origin-proximal dusB-fis operon encoding the global regulator FIS in the vicinity of replication terminus on both arms of the Escherichia coli chromosome. We found that the lower fis gene dosage in the strains with terminus-proximal dusB-fis operons was compensated by increased fis expression such that the intracellular concentration of FIS was homeostatically adjusted. Nevertheless, despite unchanged FIS levels the positional displacement of dusB-fis impaired the competitive growth fitness of cells and altered the state of the overarching network regulating DNA topology, as well as the cellular response to environmental stress, hazardous substances and antibiotics. Our finding that the chromosomal repositioning of a regulatory gene can determine the cellular phenotype unveils an important yet unexplored facet of the genetic control mechanisms and paves the way for novel approaches to manipulate bacterial physiology.
© The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research.

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Year:  2015        PMID: 26170236      PMCID: PMC4751926          DOI: 10.1093/nar/gkv709

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  56 in total

1.  Dramatic changes in Fis levels upon nutrient upshift in Escherichia coli.

Authors:  C A Ball; R Osuna; K C Ferguson; R C Johnson
Journal:  J Bacteriol       Date:  1992-12       Impact factor: 3.490

2.  Dps protects cells against multiple stresses during stationary phase.

Authors:  Sudha Nair; Steven E Finkel
Journal:  J Bacteriol       Date:  2004-07       Impact factor: 3.490

3.  Topological domain structure of the Escherichia coli chromosome.

Authors:  Lisa Postow; Christine D Hardy; Javier Arsuaga; Nicholas R Cozzarelli
Journal:  Genes Dev       Date:  2004-07-15       Impact factor: 11.361

4.  Macrodomain organization of the Escherichia coli chromosome.

Authors:  Michèle Valens; Stéphanie Penaud; Michèle Rossignol; François Cornet; Frédéric Boccard
Journal:  EMBO J       Date:  2004-10-07       Impact factor: 11.598

5.  FIS-dependent trans activation of stable RNA operons of Escherichia coli under various growth conditions.

Authors:  L Nilsson; H Verbeek; E Vijgenboom; C van Drunen; A Vanet; L Bosch
Journal:  J Bacteriol       Date:  1992-02       Impact factor: 3.490

6.  Comparison of the expression of the seven ribosomal RNA operons in Escherichia coli.

Authors:  C Condon; J Philips; Z Y Fu; C Squires; C L Squires
Journal:  EMBO J       Date:  1992-11       Impact factor: 11.598

7.  Upstream binding of idling RNA polymerase modulates transcription initiation from a nearby promoter.

Authors:  Veneta Gerganova; Sebastian Maurer; Liubov Stoliar; Aleksandre Japaridze; Giovanni Dietler; William Nasser; Tamara Kutateladze; Andrew Travers; Georgi Muskhelishvili
Journal:  J Biol Chem       Date:  2015-02-02       Impact factor: 5.157

8.  Gene regulation by H-NS as a function of growth conditions depends on chromosomal position in Escherichia coli.

Authors:  Elisa Brambilla; Bianca Sclavi
Journal:  G3 (Bethesda)       Date:  2015-02-19       Impact factor: 3.154

9.  The E.coli fis promoter is subject to stringent control and autoregulation.

Authors:  O Ninnemann; C Koch; R Kahmann
Journal:  EMBO J       Date:  1992-03       Impact factor: 11.598

10.  Chromosome position effects on gene expression in Escherichia coli K-12.

Authors:  Jack A Bryant; Laura E Sellars; Stephen J W Busby; David J Lee
Journal:  Nucleic Acids Res       Date:  2014-09-10       Impact factor: 16.971

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  22 in total

Review 1.  DNA supercoiling is a fundamental regulatory principle in the control of bacterial gene expression.

Authors:  Charles J Dorman; Matthew J Dorman
Journal:  Biophys Rev       Date:  2016-06-16

Review 2.  DNA supercoiling is a fundamental regulatory principle in the control of bacterial gene expression.

Authors:  Charles J Dorman; Matthew J Dorman
Journal:  Biophys Rev       Date:  2016-11-14

Review 3.  Chromosomal organization of transcription: in a nutshell.

Authors:  Sam Meyer; Sylvie Reverchon; William Nasser; Georgi Muskhelishvili
Journal:  Curr Genet       Date:  2017-11-28       Impact factor: 3.886

4.  Genetic context effects can override canonical cis regulatory elements in Escherichia coli.

Authors:  Scott A Scholz; Chase D Lindeboom; Peter L Freddolino
Journal:  Nucleic Acids Res       Date:  2022-10-14       Impact factor: 19.160

5.  DNA Replication Control Is Linked to Genomic Positioning of Control Regions in Escherichia coli.

Authors:  Jakob Frimodt-Møller; Godefroid Charbon; Karen A Krogfelt; Anders Løbner-Olesen
Journal:  PLoS Genet       Date:  2016-09-02       Impact factor: 5.917

6.  Broad-scale redistribution of mRNA abundance and transcriptional machinery in response to growth rate in Salmonella enterica serovar Typhimurium.

Authors:  Andrew D S Cameron; Shane C Dillon; Carsten Kröger; Laurens Beran; Charles J Dorman
Journal:  Microb Genom       Date:  2017-08-04

Review 7.  The Transcriptome of Streptococcus pneumoniae Induced by Local and Global Changes in Supercoiling.

Authors:  Adela G de la Campa; María J Ferrándiz; Antonio J Martín-Galiano; María T García; Jose M Tirado-Vélez
Journal:  Front Microbiol       Date:  2017-07-31       Impact factor: 5.640

Review 8.  Composition of Transcription Machinery and Its Crosstalk with Nucleoid-Associated Proteins and Global Transcription Factors.

Authors:  Georgi Muskhelishvili; Patrick Sobetzko; Sanja Mehandziska; Andrew Travers
Journal:  Biomolecules       Date:  2021-06-22

9.  Combining combing and secondary ion mass spectrometry to study DNA on chips using (13)C and (15)N labeling.

Authors:  Armelle Cabin-Flaman; Anne-Francoise Monnier; Yannick Coffinier; Jean-Nicolas Audinot; David Gibouin; Tom Wirtz; Rabah Boukherroub; Henri-Noël Migeon; Aaron Bensimon; Laurent Jannière; Camille Ripoll; Victor Norris
Journal:  F1000Res       Date:  2016-06-20

Review 10.  Hard-Wired Control of Bacterial Processes by Chromosomal Gene Location.

Authors:  Jelle Slager; Jan-Willem Veening
Journal:  Trends Microbiol       Date:  2016-06-27       Impact factor: 17.079

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