Literature DB >> 18667583

Intrinsic curvature associated with the coordinately regulated anthrax toxin gene promoters.

Maria Hadjifrangiskou1, Theresa M Koehler.   

Abstract

The current model for virulence gene regulation in Bacillus anthracis involves several trans-acting factors, the most important of which appears to be the anthrax toxin activator encoded by the atxA gene. AtxA is a positive regulator of the toxin genes pagA, cya and lef, and of a number of other plasmid- and chromosome-encoded genes. The AtxA protein (56 kDa) possesses a predicted winged-helix DNA-binding domain and phosphotransferase system-regulated domains, but the mechanism for positive regulation of AtxA target genes is not known. Sequence similarities in the promoter regions of AtxA-regulated genes are not apparent, and recombinant AtxA binds DNA with a high affinity in a non-specific manner. We hypothesized that the toxin genes possess common structural features or cis-acting elements that are required for positive regulation. We employed deletion analyses to determine the minimal sequences required for atxA-mediated toxin gene expression. In silico modelling and in vitro experiments using double-stranded DNA corresponding to the toxin gene promoter regions indicated significant curvature associated with these regions. These findings suggest that the structural topology of the DNA plays an important role in the control of anthrax toxin gene expression.

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Year:  2008        PMID: 18667583      PMCID: PMC4225132          DOI: 10.1099/mic.0.2007/016162-0

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  52 in total

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2.  Statistical analysis of DNA duplex structural features.

Authors:  N B Ulyanov; T L James
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3.  Co-regulation by bent DNA. Functional substitutions of the integration host factor site at sigma 54-dependent promoter Pu of the upper-TOL operon by intrinsically curved sequences.

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4.  The three Bacillus anthracis toxin genes are coordinately regulated by bicarbonate and temperature.

Authors:  J C Sirard; M Mock; A Fouet
Journal:  J Bacteriol       Date:  1994-08       Impact factor: 3.490

5.  Global effects of virulence gene regulators in a Bacillus anthracis strain with both virulence plasmids.

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6.  A DNA structural atlas for Escherichia coli.

Authors:  A G Pedersen; L J Jensen; S Brunak; H H Staerfeldt; D W Ussery
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7.  A plasmid-encoded regulator couples the synthesis of toxins and surface structures in Bacillus anthracis.

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Authors:  Timothy D Read; Scott N Peterson; Nicolas Tourasse; Les W Baillie; Ian T Paulsen; Karen E Nelson; Hervé Tettelin; Derrick E Fouts; Jonathan A Eisen; Steven R Gill; Erik K Holtzapple; Ole Andreas Okstad; Erlendur Helgason; Jennifer Rilstone; Martin Wu; James F Kolonay; Maureen J Beanan; Robert J Dodson; Lauren M Brinkac; Michelle Gwinn; Robert T DeBoy; Ramana Madpu; Sean C Daugherty; A Scott Durkin; Daniel H Haft; William C Nelson; Jeremy D Peterson; Mihai Pop; Hoda M Khouri; Diana Radune; Jonathan L Benton; Yasmin Mahamoud; Lingxia Jiang; Ioana R Hance; Janice F Weidman; Kristi J Berry; Roger D Plaut; Alex M Wolf; Kisha L Watkins; William C Nierman; Alyson Hazen; Robin Cline; Caroline Redmond; Joanne E Thwaite; Owen White; Steven L Salzberg; Brendan Thomason; Arthur M Friedlander; Theresa M Koehler; Philip C Hanna; Anne-Brit Kolstø; Claire M Fraser
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10.  Molecular analysis of the Escherichia coli hns gene encoding a DNA-binding protein, which preferentially recognizes curved DNA sequences.

Authors:  H Yamada; T Yoshida; K Tanaka; C Sasakawa; T Mizuno
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  17 in total

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4.  Overlapping and Distinct Functions of the Paralogous PagR Regulators of Bacillus anthracis.

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6.  The roles of AtxA orthologs in virulence of anthrax-like Bacillus cereus G9241.

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7.  The Novel Streptococcal Transcriptional Regulator XtgS Negatively Regulates Bacterial Virulence and Directly Represses PseP Transcription.

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Review 8.  Bacillus anthracis physiology and genetics.

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9.  The pneumococcal MgaSpn virulence transcriptional regulator generates multimeric complexes on linear double-stranded DNA.

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10.  Transcriptome analysis identifies Bacillus anthracis genes that respond to CO2 through an AtxA-dependent mechanism.

Authors:  Andrew T McKenzie; Andrei P Pomerantsev; Inka Sastalla; Craig Martens; Stacy M Ricklefs; Kimmo Virtaneva; Sarah Anzick; Stephen F Porcella; Stephen H Leppla
Journal:  BMC Genomics       Date:  2014-03-25       Impact factor: 3.969

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