Genetic analysis of the SAUSA300_1739 to SAUSA300_1744 operon across several Staphylococcus aureus strains indicate that the operon is highly conserved, highlighting its importance for virulence.
Abstract
Methicillin-resistant Staphylococcus aureus (MRSA) is an opportunistic pathogen that colonizes a significant proportion of humans, contains numerous virulence factors promoting infection, and continues to threaten human lives and burden healthcare systems globally. Many MRSA virulence factors are known to be either secreted or anchored on the outer leaflet of the cell surface. Although many virulence factors have been studied intensively in MRSA, there remains a significant proportion of secreted and surface proteins that are unstudied for their potential as virulence factors. We began with identifying proteins secreted from MRSA in axenic culture using an unbiased mass-spectrometry based approach. 2 secreted proteins thus identified mapped to an operon of 6 genes, SAUSA300_1739 to SAUSA300_1744. Mutation of each of the individual genes in the operon resulted in attenuation in a mouse model of subcutaneous infection. We demonstrate that two genes in the operon, SAUSA300_1739, and SAUSA300_1740, encode nucleases with DNase activity. Genetic analysis of the SAUSA300_1739 to SAUSA300_1744 operon across several Staphylococcus aureus strains indicate that the operon is highly conserved, highlighting its importance for virulence. Summary Methicillin-resistant Staphylococcus aureus (MRSA) remains a serious human pathogen with a myriad of virulence factors supporting pathogenicity. From a MRSA exoproteome, we identified an operon of 6 genes with unknown function that are dispensable for growth in axenic culture but promote MRSA virulence during subcutaneous infection.
An RNase-encoding gene is identified that is present in methicillin-susceptible strains, but absent from resistant counterparts, and acts as a barrier to the uptake of mobile genetic elements in Staphylococcus aureus.
Kohei Kondo, A. Azam, J. Hisatsune et al.· Nature Communications· 0 citations
The potential of SAP_2 as a biocontrol candidate for controlling MRSA contamination in milk is supported and good biosafety and reduced bacterial burdens in MRSA-infected mice are exhibited.
Dong-Xin Ma, Shuai-Feng Gu, Yu-Qiang Zhang et al.· Current Research in Food Sci...· 0 citations
Findings demonstrate that B. subtilis can serve as an effective platform for recombinant protein secretion and mucosal antigen delivery, supporting its application in vaccine development against S. aureus infection via mucosal route.
Hoa T. T. Vo, V. K. Phạm, Kiet Ngo et al.· Biotechnology Letters· 0 citations
This is the first biologically and genomically characterized S. aureus phage from Bangladesh with demonstrated activity against MDR MRSA biofilms, highlighting its potential as a promising candidate for controlling device‐associated MRSA infections.
Raphael Kabir Niloy, Shakhinur Islam Mondal, Nurnabi Azad Jewel et al.· International Journal of Mic...· 0 citations
Bacteriophage exposure drives phenotypic and molecular adaptation in MRSA and may create evolutionary trade-offs that weaken resistance mechanisms, support the potential of bacteriophages as both direct antibacterial agents and modulators of antibiotic susceptibility.
Otília Vágó, K. Laczi, László Orosz et al.· Antibiotics· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.