How Staph Infections Start In Your Nose

Researchers have identified a mechanism by which the bacterium Staphylococcus aureus (S. aureus) colonizes our nasal passages, showing for the first time that a protein located on the bacterial surface called clumping factor B (ClfB) has high affinity for the skin protein loricrin.

Researchers have identified a mechanism by which the bacterium Staphylococcus aureus (S. aureus) colonizes our nasal passages, showing for the first time that a protein located on the bacterial surface called clumping factor B (ClfB) has high affinity for the skin protein loricrin.

S. aureus is a major human pathogen - everyone has heard of staph infections - with the potential to cause severe invasive diseases. It is a major cause for concern in hospitals and healthcare facilities where many infections are caused by strains (MRSA) resistant to commonly used antibiotics. S. aureus persistently colonizes about 20% of the human population by binding to skin-like cells within the nasal cavity and being colonized predisposes an individual towards becoming infected.  

ClfB was previously shown to promote S. aureus colonization in a human nasal colonization volunteer study. The new paper identifies the mechanism by which ClfB facilitates S. aureus nasal colonization. Purified ClfB bound loricrin with high affinity and this interaction was shown to be crucial for successful colonization of the nose in a mouse model.

A knockout mouse lacking loricrin in its skin cells allowed fewer bacterial cells to colonize its nasal passages than a normal mouse. When S. aureus strains that lacked ClfB were used nasal colonization could not be achieved at all.  Finally it was shown that soluble loricrin could reduce binding of S. aureus to human nasal skin cells and that nasal administration of loricrin reduced S. aureus colonization of mice.

Rachel McLoughlin, the study's corresponding author and Lecturer at the School of Biochemistry and Immunology at Trinity College Dublin concludes, "Loricrin is a major determinant of S. aureus nasal colonization." This discovery therefore opens new avenues for developing therapeutic strategies to reduce the burden of nasal carriage and consequently infections with this bacterium. This is particularly important given the difficulties associated with treating MRSA infections.

Citation: Mulcahy ME, Geoghegan JA, Monk IR, O'Keeffe KM, Walsh EJ, et al. (2012) Nasal Colonisation by Staphylococcus aureus Depends upon Clumping Factor B Binding to the Squamous Epithelial Cell Envelope Protein Loricrin. PLoS Pathog 8(12): e1003092. doi:10.1371/journal.ppat.1003092

Old NID
99923
Categories

Latest reads

Article teaser image
Donald Trump does not have the power to rescind either constitutional amendments or federal laws by mere executive order, no matter how strongly he might wish otherwise. No president of the United…
Article teaser image
The Biden administration recently issued a new report showing causal links between alcohol and cancer, and it's about time. The link has been long-known, but alcohol carcinogenic properties have been…
Article teaser image
In British Iron Age society, land was inherited through the female line and husbands moved to live with the wife’s community. Strong women like Margaret Thatcher resulted.That was inferred due to DNA…