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Updated: Jan 18, 2026

Author Spotlight: An Adapted Optical Density-Based Microplate Assay for Characterizing Actinobacteriophage Infection
Published on: June 30, 2023
Characterization of the novel Cutibacterium acnes phage KIT08 and its associated pseudolysogenic bacterial isolate
Phuoc-Dung Nguyen1, Koki Nakanishi1, Chihiro Hosokawa1
1Department of Functional Chemistry, Kyoto Institute of Technology, Kyoto, 606-8585, Japan.
Abstract:
Cutibacterium acnes, formerly Propionibacterium acnes, is a Gram-positive bacterium commonly recognized as an important factor in acne vulgaris and infections associated with prosthetic medical devices. With the rise in antibiotic resistance, phage therapy has gained renewed attention as a promising alternative to antibiotics. In addition to a strict lytic cycle, some virulent phages may enter a pseudolysogenic state and exclude superinfections, thereby significantly limiting the applicability of these potential antimicrobial agents. However, the trade-off induced by phage infection of bacterial cells during this state and its molecular mechanism are yet to be confirmed, especially for C. acnes phages. In this study, a novel Cutibacterium acnes phage, KIT08, was isolated and characterized. It demonstrated rapid infectivity and moderately strong bacteriolysis. After infection of C. acnes NBRC 107,605, pseudolysogenic bacteria were collected and examined for physiological tradeoffs. The pseudolysogenic isolate exhibited slower growth and downregulation of the transcriptional levels of biofilm-producing genes, such as lipase 2 and hyaluronate lyase, leading to a decrease in biofilm formation. Additionally, a genomic study of phage KIT08 revealed that open reading frames 23 and 34 encode putative proteins homologous to repressor C and LTP proteins, which may play an important role in the induction of pseudolysogeny and superinfection exclusion in C. acnes.
Insights
Phage therapy offers an alternative to antibiotics for Cutibacterium acnes infections. A novel phage, KIT08, induces a pseudolysogenic state in C. acnes, reducing bacterial growth and biofilm formation.
Area of Science:
- Microbiology
- Bacteriology
- Phage Therapy
Background:
- Cutibacterium acnes (C. acnes) is linked to acne and medical device infections.
- Antibiotic resistance necessitates alternative treatments like phage therapy.
- The pseudolysogenic state in phages can limit their therapeutic use by causing bacterial trade-offs.
Purpose of the Study:
- To isolate and characterize a novel phage targeting C. acnes.
- To investigate the physiological trade-offs and molecular mechanisms of pseudolysogeny induced by C. acnes phages.
Main Methods:
- Isolation and characterization of a novel C. acnes phage, KIT08.
- Infection of C. acnes NBRC 107,605 with phage KIT08.
- Collection and examination of pseudolysogenic C. acnes isolates for physiological changes.
- Genomic analysis of phage KIT08.
Main Results:
- Phage KIT08 exhibited rapid infectivity and moderate bacteriolysis.
- Pseudolysogenic C. acnes isolates showed slower growth rates.
- Downregulation of biofilm-related genes (lipase 2, hyaluronate lyase) was observed, reducing biofilm formation.
- Phage KIT08 genome analysis identified genes potentially involved in pseudolysogeny and superinfection exclusion.
Conclusions:
- Phage KIT08 induces pseudolysogeny in C. acnes, resulting in reduced bacterial growth and biofilm formation.
- This phage-induced trade-off may impact the therapeutic application of C. acnes phages.
- Further research into the molecular mechanisms of KIT08-induced pseudolysogeny is warranted.
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