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A Non-Coding Small RNA MicC Contributes to Virulence in Outer Membrane Proteins in Salmonella Enteritidis
Published on: January 27, 2021
Expression of the Group A Streptococcus Fibrinogen-Binding Protein Mrp Is Negatively Regulated by the Small
Jessica L Danger1, Roshika Roshika1, Sushila Baral1
1Department of Microbiology & Immunology, University of Nevada, Reno School of Medicine, Reno, Nevada, USA.
Abstract:
The group A Streptococcus (GAS; Streptococcus pyogenes) causes an elaborate array of human diseases. In part, such variability in disease potential is a consequence of GAS manipulating the expression of a catalogue of virulence factors, with regulation occurring at both the transcriptional and posttranscriptional levels. The GAS small regulatory RNA (sRNA) FasX contributes to this regulatory activity, enhancing expression of the thrombolytic agent streptokinase, and reducing expression of collagen (pili) and fibronectin (PrtF1 and PrtF2) -binding adhesins. Here, we expand insight into the regulatory targets of FasX by identifying the M-related protein (Mrp), a fibrinogen-binding adhesin with anti-phagocytic activity, as a negatively-regulated target of FasX. Importantly, investigation of the consequences of FasX-mediated regulation led to the discovery that FasX is a major positive regulator of GAS survival and proliferation in non-immune whole human blood, with a 30-fold difference in GAS cell numbers between a fasX mutant strain and isogenic parental and complemented mutant strains. No difference in cell numbers were observed when these strains were grown in human serum, consistent with the protective phenotype associated with FasX occurring due to the inhibition of cell (e.g., neutrophil) - mediated GAS killing. The FasX-regulated factor/s responsible for the blood survival phenotype remain to be defined. In summary, we expand the known FasX regulon and identify a new phenotype associated with the regulatory activity of this key GAS sRNA. IMPORTANCE Small regulatory RNAs (sRNAs) represent a major class of regulatory molecule that promotes the ability of the group A Streptococcus (GAS) and other pathogens to regulate virulence factor expression. Despite FasX being the best-described sRNA in GAS, there remains much to be learned. Here, we highlight the importance of FasX, identifying for the first time that the loss of this sRNA results in a major reduction in the ability of GAS to survive in human blood, a phenotype critical to the ability of this human-specific pathogen to cause severe invasive infections. We also identified a novel regulatory target of FasX, thereby expanding the known regulon of this key sRNA.
Insights
The small regulatory RNA FasX is crucial for group A Streptococcus survival in human blood by regulating virulence factors. Loss of FasX significantly reduces GAS survival, impacting invasive infection potential.
Area of Science:
- Microbiology
- Molecular Biology
- Bacterial Pathogenesis
Background:
- Group A Streptococcus (GAS) pathogenesis involves complex regulation of virulence factors at transcriptional and posttranscriptional levels.
- Small regulatory RNAs (sRNAs) are key regulators of bacterial gene expression and virulence.
- The GAS sRNA FasX is known to regulate streptokinase and adhesins, but its full regulatory network and functional impact are not completely understood.
Purpose of the Study:
- To identify novel regulatory targets of the GAS sRNA FasX.
- To investigate the role of FasX in GAS survival and proliferation in human blood.
- To expand the understanding of FasX's contribution to GAS virulence and pathogenesis.
Main Methods:
- Identification of FasX-regulated genes using genetic manipulation and phenotypic analysis.
- Assessment of GAS survival and proliferation in non-immune whole human blood and human serum.
- Comparative growth studies of wild-type, mutant, and complemented GAS strains.
Main Results:
- The M-related protein (Mrp), a fibrinogen-binding adhesin, was identified as a novel, negatively regulated target of FasX.
- FasX is a major positive regulator of GAS survival and proliferation in whole human blood, with a 30-fold reduction in a fasX mutant.
- The protective effect of FasX in blood appears to be mediated by inhibiting cell-mediated killing, as no difference was observed in serum.
Conclusions:
- FasX regulates a broader set of virulence factors than previously known, including the anti-phagocytic adhesin Mrp.
- FasX plays a critical role in GAS resistance to host immune defenses, specifically promoting survival in human blood.
- This study highlights FasX as a key sRNA essential for the invasive potential of group A Streptococcus in human infections.
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