Literature DB >> 17400739

Growth rate toxicity phenotypes and homeostatic supercoil control differentiate Escherichia coli from Salmonella enterica serovar Typhimurium.

Keith Champion1, N Patrick Higgins.   

Abstract

Escherichia coli and Salmonella enterica serovar Typhimurium share high degrees of DNA and amino acid identity for 65% of the homologous genes shared by the two genomes. Yet, there are different phenotypes for null mutants in several genes that contribute to DNA condensation and nucleoid formation. The mutant R436-S form of the GyrB protein has a temperature-sensitive phenotype in Salmonella, showing disruption of supercoiling near the terminus and replicon failure at 42 degrees C. But this mutation in E. coli is lethal at the permissive temperature. A unifying hypothesis for why the same mutation in highly conserved homologous genes of different species leads to different physiologies focuses on homeotic supercoil control. During rapid growth in mid-log phase, E. coli generates 15% more negative supercoils in pBR322 DNA than Salmonella. Differences in compaction and torsional strain on chromosomal DNA explain a complex set of single-gene phenotypes and provide insight into how supercoiling may modulate epigenetic effects on chromosome structure and function and on prophage behavior in vivo.

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Year:  2007        PMID: 17400739      PMCID: PMC1952050          DOI: 10.1128/JB.00083-07

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  89 in total

1.  Replication restart in gyrB Escherichia coli mutants.

Authors:  Gianfranco Grompone; S Dusko Ehrlich; Bénédicte Michel
Journal:  Mol Microbiol       Date:  2003-05       Impact factor: 3.501

2.  Under DNA stress, gyrase makes the sign of the cross.

Authors:  N Patrick Higgins
Journal:  Nat Struct Mol Biol       Date:  2007-04       Impact factor: 15.369

3.  Gene expression from plasmids containing the araBAD promoter at subsaturating inducer concentrations represents mixed populations.

Authors:  D A Siegele; J C Hu
Journal:  Proc Natl Acad Sci U S A       Date:  1997-07-22       Impact factor: 11.205

4.  DNA supercoiling by DNA gyrase. A static head analysis.

Authors:  H V Westerhoff; M H O'Dea; A Maxwell; M Gellert
Journal:  Cell Biophys       Date:  1988 Jan-Jun

5.  H-NS over-expression induces an artificial stationary phase by silencing global transcription.

Authors:  V McGovern; N P Higgins; R S Chiz; A Jaworski
Journal:  Biochimie       Date:  1994       Impact factor: 4.079

6.  Inducible prophages contribute to Salmonella virulence in mice.

Authors:  N Figueroa-Bossi; L Bossi
Journal:  Mol Microbiol       Date:  1999-07       Impact factor: 3.501

7.  Bacteriophage T4 development depends on the physiology of its host Escherichia coli.

Authors:  Hilla Hadas; Monica Einav; Itzhak Fishov; Arieh Zaritsky
Journal:  Microbiology (Reading)       Date:  1997-01       Impact factor: 2.777

8.  A class of gyrase mutants of Salmonella typhimurium show quinolone-like lethality and require rec functions for viability.

Authors:  E Garí; N Figueroa-Bossi; A B Blanc-Potard; F Spirito; M B Schmid; L Bossi
Journal:  Mol Microbiol       Date:  1996-07       Impact factor: 3.501

9.  Mutations in the gene coding for Escherichia coli DNA topoisomerase I affect transcription and transposition.

Authors:  R Sternglanz; S DiNardo; K A Voelkel; Y Nishimura; Y Hirota; K Becherer; L Zumstein; J C Wang
Journal:  Proc Natl Acad Sci U S A       Date:  1981-05       Impact factor: 11.205

10.  Multiple modes of Escherichia coli DNA gyrase activity revealed by force and torque.

Authors:  Marcelo Nöllmann; Michael D Stone; Zev Bryant; Jeff Gore; Nancy J Crisona; Seok-Cheol Hong; Sylvain Mitelheiser; Anthony Maxwell; Carlos Bustamante; Nicholas R Cozzarelli
Journal:  Nat Struct Mol Biol       Date:  2007-03-04       Impact factor: 15.369

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  29 in total

Review 1.  Folded DNA in action: hairpin formation and biological functions in prokaryotes.

Authors:  David Bikard; Céline Loot; Zeynep Baharoglu; Didier Mazel
Journal:  Microbiol Mol Biol Rev       Date:  2010-12       Impact factor: 11.056

2.  Evolution, adaptation, and supercoiling.

Authors:  Arkady B Khodursky
Journal:  J Bacteriol       Date:  2007-06-15       Impact factor: 3.490

3.  Structural basis for the MukB-topoisomerase IV interaction and its functional implications in vivo.

Authors:  Seychelle M Vos; Nichole K Stewart; Martha G Oakley; James M Berger
Journal:  EMBO J       Date:  2013-10-04       Impact factor: 11.598

4.  E. coli Gyrase Fails to Negatively Supercoil Diaminopurine-Substituted DNA.

Authors:  Mónica Fernández-Sierra; Qing Shao; Chandler Fountain; Laura Finzi; David Dunlap
Journal:  J Mol Biol       Date:  2015-04-19       Impact factor: 5.469

Review 5.  Chapter 5. Nuclear actin-related proteins in epigenetic control.

Authors:  Richard B Meagher; Muthugapatti K Kandasamy; Elizabeth C McKinney; Eileen Roy
Journal:  Int Rev Cell Mol Biol       Date:  2009       Impact factor: 6.813

Review 6.  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 7.  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

8.  Cellular pathways controlling integron cassette site folding.

Authors:  Céline Loot; David Bikard; Anna Rachlin; Didier Mazel
Journal:  EMBO J       Date:  2010-07-13       Impact factor: 11.598

Review 9.  All tangled up: how cells direct, manage and exploit topoisomerase function.

Authors:  Seychelle M Vos; Elsa M Tretter; Bryan H Schmidt; James M Berger
Journal:  Nat Rev Mol Cell Biol       Date:  2011-11-23       Impact factor: 94.444

Review 10.  Topological Behavior of Plasmid DNA.

Authors:  N Patrick Higgins; Alexander V Vologodskii
Journal:  Microbiol Spectr       Date:  2015-04
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