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MS2 Lysis of Escherichia coli Depends on Host Chaperone DnaJ

Karthik R Chamakura1,2, Jennifer S Tran1,2, Ry Young3,2

  • 1Center for Phage Technology, Texas A&M AgriLife, Texas A&M University, College Station, Texas, USA.

Insights

The MS2 phage L protein lysis mechanism involves the host chaperone DnaJ. A DnaJ mutation blocks lysis, revealing DnaJ

Area of Science:

  • Microbiology
  • Molecular Biology
  • Virology

Background:

  • The L protein of MS2 phage causes lysis of E. coli.
  • The molecular basis of MS2 L protein-mediated lysis is unknown.
  • Previous studies show lysis proteins from other phages inhibit peptidoglycan synthesis.

Purpose of the Study:

  • Identify host genes required for L protein-mediated lysis.
  • Characterize the interaction between MS2 L protein and host factors.
  • Determine the minimal lytic domain of MS2 L protein.

Main Methods:

  • Selection and characterization of lysis-insensitive mutants.
  • Genetic analysis of lysis-deficient and lysis-restoring alleles.
  • Co-immunoprecipitation to assess protein complex formation.

Main Results:

  • A mutation in the DnaJ chaperone (dnaJP330Q) blocks MS2 L protein-mediated lysis.
  • DnaJ interacts with full-length L protein, and this interaction is disrupted by the dnaJP330Q mutation.
  • Truncated L protein alleles lacking the N-terminal domain bypass the DnaJ requirement for lysis.

Conclusions:

  • DnaJ is a host factor essential for MS2 L protein-mediated lysis.
  • The N-terminal domain of L protein is important for lysis and interacts with DnaJ.
  • This study reveals a common mechanism for single-gene lysis modulation by host factors.

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