Increased Neutrophil Extracellular Trap–Mediated Staphylococcus aureus Clearance Through Inhibition of Nuclease Activity by Clindamycin and Immunoglobulin

K Schilcher, F Andreoni, S Uchiyama… - The Journal of …, 2014 - academic.oup.com
The Journal of infectious diseases, 2014academic.oup.com
The Gram-positive human pathogen Staphylococcus aureus causes a variety of human
diseases such as skin infections, pneumonia, and endocarditis. The micrococcal nuclease
Nuc1 is one of the major S. aureus virulence factors and allows the bacterium to avoid
neutrophil extracellular trap (NET)–mediated killing. We found that addition of the protein
synthesis inhibitor clindamycin to S. aureus LAC cultures decreased nuc1 transcription and
subsequently blunted nuclease activity in a molecular beacon–based fluorescence assay …
Abstract
The Gram-positive human pathogen Staphylococcus aureus causes a variety of human diseases such as skin infections, pneumonia, and endocarditis. The micrococcal nuclease Nuc1 is one of the major S. aureus virulence factors and allows the bacterium to avoid neutrophil extracellular trap (NET)–mediated killing. We found that addition of the protein synthesis inhibitor clindamycin to S. aureus LAC cultures decreased nuc1 transcription and subsequently blunted nuclease activity in a molecular beacon–based fluorescence assay. We also observed reduced NET degradation through Nuc1 inhibition translating into increased NET-mediated clearance. Similarly, pooled human immunoglobulin specifically inhibited nuclease activity in a concentration-dependent manner. Inhibition of nuclease activity by clindamycin and immunoglobulin enhanced S. aureus clearance and should be considered in the treatment of S. aureus infections.
Oxford University Press