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Methods to Inhibit Bacterial Pyomelanin Production and Determine the Corresponding Increase in Sensitivity to Oxidative Stress
Published on: August 31, 2015
The staphylococcal inhibitory protein SPIN binds to human myeloperoxidase with picomolar affinity but only dampens
Urban Leitgeb1, Paul G Furtmüller1, Stefan Hofbauer1
1University of Natural Resources and Life Sciences, Vienna, Department of Chemistry, Institute of Biochemistry, Vienna, Austria.
Abstract:
The heme enzyme myeloperoxidase (MPO) is one of the key players in the neutrophil-mediated killing of invading pathogens as part of the innate immune system. MPO generates antimicrobial oxidants, which indiscriminately and effectively kill phagocytosed pathogens. Staphylococcus aureus, however, is able to escape this fate, in part by secreting a small protein called SPIN (Staphylococcal Peroxidase Inhibitor), which specifically targets and inhibits MPO in a structurally complex manner. Here, we present the first crystal structures of the complex of SPIN-aureus and a truncated version (SPIN-truncated) with mature dimeric leukocyte MPO. We unravel the contributions of the two domains to the kinetics and thermodynamics of SPIN-aureus binding to MPO by using a broad array of complementary biochemical and biophysical methods. The C-terminal "recognition" domain is shown to mediate specific binding to MPO, while interaction of the N-terminal "inhibitory" domain is guided mainly by hydrophobic effects and thus is less sequence dependent. We found that inhibition of MPO is achieved by reducing substrate migration, but SPIN-aureus cannot completely block MPO activity. Its' effectiveness is inversely related to substrate size, with no discernible dependence on other factors. Thus, SPIN-aureus is an extremely high-affinity inhibitor and highly efficient for substrates larger than halogens. As aberrant MPO activity is implicated in a number of chronic inflammatory diseases, SPIN-aureus is the first promising protein inhibitor for specific inhibition of human MPO.
Insights
Staphylococcus aureus secretes SPIN to inhibit myeloperoxidase (MPO). This study reveals SPIN
Area of Science:
- Biochemistry
- Immunology
- Structural Biology
Background:
- Myeloperoxidase (MPO) is crucial for innate immunity, generating oxidants to kill pathogens.
- Staphylococcus aureus evades MPO by secreting Staphylococcal Peroxidase Inhibitor (SPIN).
Purpose of the Study:
- To elucidate the structural basis and inhibitory mechanism of SPIN-aureus binding to human MPO.
- To characterize the roles of SPIN's domains in MPO inhibition.
Main Methods:
- X-ray crystallography to determine the structure of MPO-SPIN complexes.
- Biochemical and biophysical assays to analyze binding kinetics and thermodynamics.
Main Results:
- First crystal structures of SPIN-aureus and SPIN-truncated complexed with MPO.
- Identified C-terminal domain for specific MPO binding and N-terminal domain for hydrophobic interactions.
- SPIN-aureus inhibits MPO by reducing substrate migration, with effectiveness inversely related to substrate size.
Conclusions:
- SPIN-aureus is a high-affinity inhibitor of MPO, particularly for larger substrates.
- SPIN-aureus represents a potential therapeutic agent for chronic inflammatory diseases linked to aberrant MPO activity.
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