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Updated: Apr 26, 2026

Microtiter Dish Biofilm Formation Assay
Published on: January 30, 2011
Propionibacterium-produced coproporphyrin III induces Staphylococcus aureus aggregation and biofilm formation
Michael S Wollenberg1, Jan Claesen2, Isabel F Escapa
1Department of Microbiology, The Forsyth Institute, Cambridge, Massachusetts, USA Department of Oral Medicine, Infection & Immunity, Harvard School of Dental Medicine, Boston, Massachusetts, USA.
Abstract:
The majority of bacteria detected in the nostril microbiota of most healthy adults belong to three genera: Propionibacterium, Corynebacterium, and Staphylococcus. Among these staphylococci is the medically important bacterium Staphylococcus aureus. Almost nothing is known about interspecies interactions among bacteria in the nostrils. We observed that crude extracts of cell-free conditioned medium from Propionibacterium spp. induce S. aureus aggregation in culture. Bioassay-guided fractionation implicated coproporphyrin III (CIII), the most abundant extracellular porphyrin produced by human-associated Propionibacterium spp., as a cause of S. aureus aggregation. This aggregation response depended on the CIII dose and occurred during early stationary-phase growth, and a low pH (~4 to 6) was necessary but was not sufficient for its induction. Additionally, CIII induced plasma-independent S. aureus biofilm development on an abiotic surface in multiple S. aureus strains. In strain UAMS-1, CIII stimulation of biofilm depended on sarA, a key biofilm regulator. This study is one of the first demonstrations of a small-molecule-mediated interaction among medically relevant members of the nostril microbiota and the first description of a role for CIII in bacterial interspecies interactions. Our results indicate that CIII may be an important mediator of S. aureus aggregation and/or biofilm formation in the nostril or other sites inhabited by Propionibacterium spp. and S. aureus. Importance: Very little is known about interspecies interactions among the bacteria that inhabit the adult nostril, including Staphylococcus aureus, a potential pathogen that colonizes about a quarter of adults. We demonstrated that coproporphyrin III (CIII), a diffusible small molecule excreted by nostril- and skin-associated Propionibacterium spp., induces S. aureus aggregation in a manner dependent on dose, growth phase, and pH. CIII also induces S. aureus to form a plasma-independent surface-attached biofilm. This report is the first description of a role for CIII in bacterial interspecies interactions at any human body site and a novel demonstration that nostril microbiota physiology is influenced by small-molecule-mediated interactions.
Insights
Propionibacterium spp. excrete coproporphyrin III (CIII), a molecule that causes Staphylococcus aureus aggregation and biofilm formation. This discovery reveals a key small-molecule interaction within the human nostril microbiota.
Area of Science:
- Microbiology
- Bacterial Interactions
- Host-Microbiota Dynamics
Background:
- The human nostril harbors a complex microbiota, with Propionibacterium, Corynebacterium, and Staphylococcus genera being dominant.
- Staphylococcus aureus is a medically significant bacterium frequently colonizing the adult nostril, yet interspecies interactions remain poorly understood.
- Understanding microbial interactions is crucial for deciphering colonization dynamics and potential pathogenic roles.
Purpose of the Study:
- To investigate the molecular mechanisms underlying interspecies interactions within the nostril microbiota.
- To identify specific molecules produced by Propionibacterium spp. that influence Staphylococcus aureus behavior.
- To explore the role of these interactions in bacterial aggregation and biofilm formation.
Main Methods:
- Analysis of cell-free conditioned media from Propionibacterium spp. for effects on S. aureus.
- Bioassay-guided fractionation to isolate the active compound responsible for S. aureus aggregation.
- Characterization of the aggregation response, including dose-dependency, growth phase, and pH requirements.
- Assessment of S. aureus biofilm formation induced by the identified molecule on abiotic surfaces.
Main Results:
- Crude extracts from Propionibacterium spp. induced S. aureus aggregation.
- Coproporphyrin III (CIII), a porphyrin produced by Propionibacterium spp., was identified as the causative agent of S. aureus aggregation.
- CIII-induced aggregation was dose-dependent, occurred during early stationary phase, and required low pH (4-6).
- CIII also promoted plasma-independent S. aureus biofilm development, regulated by the sarA gene in strain UAMS-1.
Conclusions:
- Coproporphyrin III (CIII) is a novel mediator of interspecies interactions, inducing aggregation and biofilm formation in Staphylococcus aureus.
- This study provides the first evidence of a small-molecule-mediated interaction between Propionibacterium and Staphylococcus in the human nostril.
- CIII may play a significant role in modulating S. aureus colonization and behavior within the nasal environment and other co-colonized sites.
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