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Updated: Jul 7, 2026

A Tandem Liquid Chromatography–Mass Spectrometry-based Approach for Metabolite Analysis of Staphylococcus aureus
Published on: March 28, 2017
Development of a New N-Terminomic Method to Study the Pathodegradome of the Staphylococcus aureus V8 Protease in
Abstract:
Staphylococcus aureus is a notorious human pathogen that relies on an array of virulence factors to engender infection and evade the host-immune system. Among these are the secreted proteases, which promote pathogenesis by degrading host proteins and modulating host-defenses. Human neutrophils play a pivotal role in these defenses, acting as the first responders against invading bacteria. While many S. aureus effectors of virulence have been shown to target leukocytes, there is limited knowledge on how the extracellular proteases modulate neutrophil fate. Typically, protease substrates have been identified in isolated settings using one at a time approaches; with neutrophil targets few and far between. Herein, we have developed a novel N-terminomic methodology termed TAGS-CR that can facilitate global substrate characterization in streamlined manner. We thus present the application of TAGS-CR to unravelling the human neutrophil pathodegradome of the S. aureus V8 protease. In so doing, we captured ∼350 V8 targets, revealing critical insight into how this virulence factor can modulate neutrophil functionality on various levels relevant to S. aureus disease progression. We recorded cleavage of proteins necessary for neutrophil adhesion and migration, a fundamental process necessary for pathogen clearance. Furthermore, we highlight V8 cleavage of proteins involved in important neutrophil defense tactics, such as degranulation and reactive oxygen species production. This protease may also facilitate bacterial dissemination via the intentional activation of neutrophil apoptosis. Collectively, this work deepens our understanding of host-pathogen interaction and begins to unravel how S. aureus proteases can induce immune dysregulation through the targeting of leukocytes.
Importance:
During infection Staphylococcus aureus must engage and evade the host immune system in order to successfully cause disease. As neutrophils represent the frontline of defense against invading S. aureus cells, it becomes increasingly important to decode how this bacterium subverts their host-defense tactics. While the contributing role to neutrophil engagement for many S. aureus virulence factors have been elucidated, the effects of their proteases remain largely unclear. Here, we present a novel method for global protease substrate identification, TAGS-CR, and use it to identify S. aureus V8 protease targets in human neutrophils. These include factors that not only govern general neutrophil function but moreover, their defense mechanisms, such as migration, degranulation, oxidative defense, phagocytosis and apoptosis.
Insights
Staphylococcus aureus V8 protease targets over 350 proteins in human neutrophils, impacting immune defenses like migration and apoptosis. This study reveals how the pathogen disrupts neutrophil function to cause disease.
Area of Science:
- Microbiology
- Immunology
- Proteomics
Background:
- Staphylococcus aureus employs virulence factors to evade host immunity.
- Secreted proteases degrade host proteins, aiding pathogenesis.
- Neutrophils are key immune cells combating S. aureus, but how proteases affect them is unclear.
Purpose of the Study:
- To identify global substrates of the S. aureus V8 protease in human neutrophils.
- To understand how V8 protease modulates neutrophil function and host-pathogen interactions.
Main Methods:
- Developed and applied a novel N-terminomic method, TAGS-CR, for global protease substrate identification.
- Analyzed V8 protease targets within human neutrophils.
Main Results:
- Identified approximately 350 V8 protease targets in human neutrophils.
- Revealed V8 protease cleaves proteins essential for neutrophil adhesion, migration, degranulation, and reactive oxygen species production.
- Demonstrated V8 protease can induce neutrophil apoptosis, potentially aiding bacterial dissemination.
Conclusions:
- The S. aureus V8 protease significantly dysregulates neutrophil function through extensive protein cleavage.
- Understanding these interactions deepens knowledge of host-pathogen dynamics in S. aureus infections.
- TAGS-CR is an effective tool for characterizing protease substrates in complex biological systems.

