Related Experiment Video
Updated: Feb 17, 2026

Detection of Tissue-resident Bacteria in Bladder Biopsies by 16S rRNA Fluorescence In Situ Hybridization
Published on: October 18, 2019
Prevalence of Flp Pili-Encoding Plasmids in Cutibacterium acnes Isolates Obtained from Prostatic Tissue
Sabina Davidsson1, Jessica Carlsson1, Paula Mölling2
1Department of Urology, Faculty of Medicine and Health, Örebro University, Örebro, Sweden.
Abstract:
Inflammation is one of the hallmarks of prostate cancer. The origin of inflammation is unknown, but microbial infections are suspected to play a role. In previous studies, the Gram-positive, low virulent bacterium Cutibacterium (formerly Propionibacterium) acnes was frequently isolated from prostatic tissue. It is unclear if the presence of the bacterium represents a true infection or a contamination. Here we investigated Cutibacterium acnes type II, also called subspecies defendens, which is the most prevalent type among prostatic C. acnes isolates. Genome sequencing of type II isolates identified large plasmids in several genomes. The plasmids are highly similar to previously identified linear plasmids of type I C. acnes strains associated with acne vulgaris. A PCR-based analysis revealed that 28.4% (21 out of 74) of all type II strains isolated from cancerous prostates carry a plasmid. The plasmid shows signatures for conjugative transfer. In addition, it contains a gene locus for tight adherence (tad) that is predicted to encode adhesive Flp (fimbrial low-molecular weight protein) pili. In subsequent experiments a tad locus-encoded putative pilin subunit was identified in the surface-exposed protein fraction of plasmid-positive C. acnes type II strains by mass spectrometry, indicating that the tad locus is functional. Additional plasmid-encoded proteins were detected in the secreted protein fraction, including two signal peptide-harboring proteins; the corresponding genes are specific for type II C. acnes, thus lacking from plasmid-positive type I C. acnes strains. Further support for the presence of Flp pili in C. acnes type II was provided by electron microscopy, revealing cell appendages in tad locus-positive strains. Our study provides new insight in the most prevalent prostatic subspecies of C. acnes, subsp. defendens, and indicates the existence of Flp pili in plasmid-positive strains. Such pili may support colonization and persistent infection of human prostates by C. acnes.
Insights
Cutibacterium acnes subspecies defendens, prevalent in prostate cancer, carries plasmids encoding functional Flp pili. These pili may facilitate persistent prostate colonization and infection by this bacterium.
Area of Science:
- Microbiology
- Oncology
- Genomics
Background:
- Inflammation is a key feature of prostate cancer, with microbial infections suspected as a cause.
- Cutibacterium acnes (formerly Propionibacterium acnes) is frequently found in prostate tissue, but its role as a pathogen or contaminant is unclear.
- Cutibacterium acnes type II, or subspecies defendens, is the most common type isolated from prostates.
Purpose of the Study:
- To investigate the genetic characteristics of Cutibacterium acnes subspecies defendens found in prostate cancer.
- To determine the presence and function of plasmids in these bacteria.
- To explore the potential role of bacterial structures, like pili, in prostate colonization.
Main Methods:
- Genome sequencing of Cutibacterium acnes type II isolates.
- PCR analysis to detect plasmid presence.
- Mass spectrometry to identify surface and secreted proteins.
- Electron microscopy to visualize cell structures.
Main Results:
- Plasmids were identified in 28.4% of Cutibacterium acnes type II strains from cancerous prostates.
- These plasmids contain a functional tight adherence (tad) locus encoding Flp pili, observed via mass spectrometry and electron microscopy.
- Specific plasmid-encoded proteins, absent in type I strains, were detected in the secreted fraction.
Conclusions:
- Cutibacterium acnes subspecies defendens possesses plasmids that enable the formation of functional Flp pili.
- These pili likely contribute to the bacterium's ability to colonize and establish persistent infections in the human prostate.
- This research offers new insights into the role of Cutibacterium acnes in prostate cancer pathogenesis.
More Related Videos
Related Concept Videos
Fimbriae, Pili, and Axial Filaments
Bacterial Phylum Actinobacteria
Bacterial Phylum Firmicutes
Bacterial Phylum Verrucomicrobiota
Genomic DNA in Prokaryotes
Genomic Diversity in Bacteria
Although bacterial genomes are much...

