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March 10, 2026Microbial Biotechnology0 citationsOpen Access

Functional Evaluation of a Conserved HNH Endonuclease Gene in Lactococcal Skunavirus Genomes

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JYJun‐Hyeok YuFHFrank HilleCCChristian Cambillau

Key Points

  • The aim is to understand the role of the hrdP gene in Skunavirus phage infection and virion production.
  • Functional evaluation of the hrdP gene in Skunavirus sk1
  • Transmission electron microscopy analysis of virion structure
  • Comparison of hrdP deletion mutant with wild-type sk1
  • HrdP is essential for producing infective Skunavirus sk1 virions.
  • HrdP exhibits non-specific endonuclease activity.
  • The hrdP deletion mutant shows no plaque-forming ability despite normal DNA replication and protein production.
  • Proheads of the deletion mutant display conformational changes but fail to produce intact virions.

Abstract

ABSTRACT Skunavirus is the most frequently encountered Lactococcus ‐infecting (bacterio)phage genus in dairy fermentations and may cause milk acidification failure or inefficiencies. During phage infection, DNA packaging into the phage prohead is a crucial step for the successful maturation of phage progeny. In the Skunavirus genus of lactococcal phages, a predicted HNH endonuclease‐encoding gene adjacent to two putative DNA packaging genes is highly conserved. In the current study, we show that this gene, designated here as hrdP (HNH endonuclease related to DNA packaging), is essential for the production of infective Skunavirus sk1 virions. HrdP exhibits non‐specific endonuclease activity, while deletion of hrdP from the sk1 genome results in loss of plaque‐forming ability without hindering its DNA replication or protein production. Transmission electron microscopy analysis showed that the hrdP deletion mutant in sk1 is unable to produce intact virions. However, the proheads in this mutant displayed conformational changes associated with capsid expansion, suggesting that DNA packaging had initiated and progressed to a certain extent. This study provides valuable insights into the specific role of HrdP in Skunavirus members, highlighting it as a potential target for developing anti‐phage strategies to enhance starter culture robustness.

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Cite This Study

Yu et al. (2026) studied this question.

synapsesocial.com/papers/69af953870916d39fea4c851https://doi.org/10.1111/1751-7915.70326
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