scholarly journals Structure of Bacillus anthracis AtxA, a dimeric virulence regulator, with one subunit color-coded and one in gray. AtxA contains two phosphoenolpyruvate:carbohydrate phosphotransferase system-related domains (PRD1 and PRD2; blue and green) and two helix-t

2015 ◽  
Vol 95 (3) ◽  
pp. i-i
2008 ◽  
Vol 190 (19) ◽  
pp. 6483-6492 ◽  
Author(s):  
Cristina Bongiorni ◽  
Tatsuya Fukushima ◽  
Adam C. Wilson ◽  
Christina Chiang ◽  
M. Cecilia Mansilla ◽  
...  

ABSTRACT The AtxA virulence regulator of Bacillus anthracis is required for toxin and capsule gene expression. AtxA is a phosphotransferase system regulatory domain-containing protein whose activity is regulated by phosphorylation/dephosphorylation of conserved histidine residues. Here we report that transcription of the atxA gene occurs from two independent promoters, P1 (previously described by Dai et al. [Z. Dai, J. C. Sirard, M. Mock, and T. M. Koehler, Mol. Microbiol. 16:1171-1181, 1995]) and P2, whose transcription start sites are separated by 650 bp. Both promoters have −10 and −35 consensus sequences compatible with recognition by σA-containing RNA polymerase, and neither promoter depends on the sporulation sigma factor SigH. The dual promoter activity and the extended untranslated mRNA suggest that as-yet-unknown regulatory mechanisms may act on this region to influence the level of AtxA in the cell.


2018 ◽  
Vol 9 ◽  
Author(s):  
Jennifer L. Dale ◽  
Malik J. Raynor ◽  
Maureen C. Ty ◽  
Maria Hadjifrangiskou ◽  
Theresa M. Koehler

2011 ◽  
Vol 82 (3) ◽  
pp. 634-647 ◽  
Author(s):  
Troy G. Hammerstrom ◽  
Jung Hyeob Roh ◽  
Edward P. Nikonowicz ◽  
Theresa M. Koehler

2009 ◽  
Vol 77 (10) ◽  
pp. 4437-4445 ◽  
Author(s):  
Willem van Schaik ◽  
Alice Château ◽  
Marie-Agnès Dillies ◽  
Jean-Yves Coppée ◽  
Abraham L. Sonenshein ◽  
...  

ABSTRACT In gram-positive bacteria, CodY is an important regulator of genes whose expression changes upon nutrient limitation and acts as a repressor of virulence gene expression in some pathogenic species. Here, we report the role of CodY in Bacillus anthracis, the etiologic agent of anthrax. Disruption of codY completely abolished virulence in a toxinogenic, noncapsulated strain, indicating that the activity of CodY is required for full virulence of B. anthracis. Global transcriptome analysis of a codY mutant and the parental strain revealed extensive differences. These differences could reflect direct control for some genes, as suggested by the presence of CodY binding sequences in their promoter regions, or indirect effects via the CodY-dependent control of other regulatory proteins or metabolic rearrangements in the codY mutant strain. The differences included reduced expression of the anthrax toxin genes in the mutant strain, which was confirmed by lacZ reporter fusions and immunoblotting. The accumulation of the global virulence regulator AtxA protein was strongly reduced in the mutant strain. However, in agreement with the microarray data, expression of atxA, as measured using an atxA-lacZ transcriptional fusion and by assaying atxA mRNA, was not significantly affected in the codY mutant. An atxA-lacZ translational fusion was also unaffected. Overexpression of atxA restored toxin component synthesis in the codY mutant strain. These results suggest that CodY controls toxin gene expression by regulating AtxA accumulation posttranslationally.


2021 ◽  
Vol 11 ◽  
Author(s):  
Ileana D. Corsi ◽  
Soumita Dutta ◽  
Ambro van Hoof ◽  
Theresa M. Koehler

Small regulatory RNAs (sRNAs) are short transcripts that base-pair to mRNA targets or interact with regulatory proteins. sRNA function has been studied extensively in Gram-negative bacteria; comparatively less is known about sRNAs in Firmicutes. Here we investigate two sRNAs encoded by virulence plasmid pXO1 of Bacillus anthracis, the causative agent of anthrax. The sRNAs, named “XrrA and XrrB” (for pXO1-encoded regulatory RNA) are abundant and highly stable primary transcripts, whose expression is dependent upon AtxA, the master virulence regulator of B. anthracis. sRNA levels are highest during culture conditions that promote AtxA expression and activity, and sRNA levels are unaltered in Hfq RNA chaperone null-mutants. Comparison of the transcriptome of a virulent Ames-derived strain to the transcriptome of isogenic sRNA-null mutants revealed multiple 4.0- to >100-fold differences in gene expression. Most regulatory effects were associated with XrrA, although regulation of some transcripts suggests functional overlap between the XrrA and XrrB. Many sRNA-regulated targets were chromosome genes associated with branched-chain amino acid metabolism, proteolysis, and transmembrane transport. Finally, in a mouse model for systemic anthrax, the lungs and livers of animals infected with xrrA-null mutants had a small reduction in bacterial burden, suggesting a role for XrrA in B. anthracis pathogenesis.


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