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.

Archives of Microbiology
|September 11, 2025
PubMed

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.

Related Concept Videos

Lytic Cycle of Bacteriophages01:30

Lytic Cycle of Bacteriophages

Bacteriophages, also known as phages, are specialized viruses that infect bacteria. A key characteristic of phages is their distinctive “head-tail” morphology. A phage begins the infection process (i.e., lytic cycle) by attaching to the outside of a bacterial cell. Attachment is accomplished via proteins in the phage tail that bind to specific receptor proteins on the outer surface of the bacterium. The tail injects the phage’s DNA genome into the bacterial cytoplasm. In the...
77.5K
Bacterial Phylum Actinobacteria01:30

Bacterial Phylum Actinobacteria

Coryneform bacteria are gram-positive, aerobic, nonmotile rods that exhibit irregular, club-shaped, or V-shaped arrangements. Their V-shape results from snapping division, where the inner cell wall layer forms the cross-wall, while the outer layer remains intact until it ruptures on one side, causing the daughter cells to bend away.The primary genera are Corynebacterium and Arthrobacter. Corynebacterium includes diverse species, ranging from saprophytes to pathogens like Corynebacterium...
622
Viral Replication: Lysogenic Cycle01:16

Viral Replication: Lysogenic Cycle

The lysogenic cycle is a crucial viral replication strategy that allows bacteriophages to persist within host cells without immediately destroying them. This process is primarily observed in temperate phages, such as bacteriophage lambda (λ), which infects Escherichia coli. The cycle allows the viral genome to persist across bacterial generations while keeping host cells viable.Integration of the Viral GenomeUpon infection, bacteriophage lambda attaches to the bacterial surface and injects...
1.4K
Lysogenic Cycle of Bacteriophages00:43

Lysogenic Cycle of Bacteriophages

In contrast to the lytic cycle, phages infecting bacteria via the lysogenic cycle do not immediately kill their host cell. Instead, they combine their genome with the host genome, allowing the bacteria to replicate the phage DNA along with the bacterial genome. The incorporated copy of the phage genome is called the prophage. Some prophages can re-activate and enter the lytic cycle. This often occurs in response to a perturbation, such as DNA damage, but can also transpire in the absence of...
67.3K
Viral Replication: Lytic Cycle01:20

Viral Replication: Lytic Cycle

Bacteriophages, or phages, are viruses that specifically infect bacteria. Among them, T-even bacteriophages, such as T4, exhibit a well-characterized lytic replication cycle in Escherichia coli (E. coli). This process ensures the rapid proliferation of the virus while ultimately leading to the destruction of the bacterial host.Attachment and DNA InjectionThe infection process begins with the recognition and binding of the T4 phage to the E. coli cell surface. Tail fibers of the phage...
1.3K
DNA Bacteriophages01:26

DNA Bacteriophages

Bacteriophages, or phages, are viruses that specifically infect bacteria, utilizing their genetic material to hijack host cellular machinery for replication. DNA bacteriophages employ single-stranded DNA (ssDNA) or double-stranded DNA (dsDNA) genomes. These phages exhibit diverse replication strategies and host interactions, influencing their ecological roles and applications in biotechnology and medicine.ssDNA BacteriophagesssDNA phages, with their small genomes, utilize unique strategies to...
827