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Updated: Sep 11, 2026

Phage Phenomics: Physiological Approaches to Characterize Novel Viral Proteins
Published on: June 11, 2015
Phospholipid metabolism in Pseudomonas BAL-31 infected with lipid-containing bacteriophage PM2
Abstract:
Infection of Pseudomonas BAL-31 with the lipid-containing bacteriophage PM2 resulted in no detectable change in the rate of phosphatidylglycerol (PG) or phosphatidylethanolamine (PE) biosynthesis. An increase in the PG content of infected cultures was not seen until the cultures began to lyse, and this increase was in fact only a relative increase resulting from the extensive turnover of PE at the onset of culture lysis. Turnover studies revealed that the glycerol, phosphorus fatty acid, and ethanolamine moieties of PE turned over simultaneously at the time of lysis, and therefore made it unlikely that there was a PE to PG conversion during the latent period of the phage. The lipid found in the bacteriophage did not reflect a preferential selection for lipid synthesized before or after infection, but in fact reflected the composition of the host membrane at the time the phage were assembled. The use of a modified medium that allowed the cultivation of Pseudomonas BAL-31 as a prototroph and resulted in reliable lysis times of infected cultures led us to the conclusion that PM2 infection effects little change in host phospholipid metabolism, and that there is sufficient PG in the host cytoplasmic membrane to account for a full burst of phage. As a result of the reliable lysis times that we have achieved, we concluded that certain metabolic events, i.e., PE turnover, are lytic phenomena and must not be confused with events relevant to the biosynthesis and maturation of the phage.
Insights
Bacteriophage PM2 infection causes minimal changes to Pseudomonas BAL-31 phospholipid metabolism. Host membrane composition, not synthesis timing, dictates phage lipid content, with phosphatidylethanolamine turnover occurring during lysis.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Pseudomonas BAL-31 is a bacterial host.
- Bacteriophage PM2 is a lipid-containing virus.
- Bacterial phospholipid metabolism is crucial for viral replication.
Purpose of the Study:
- To investigate the effect of bacteriophage PM2 infection on Pseudomonas BAL-31 phospholipid biosynthesis.
- To determine if bacteriophage infection alters phosphatidylglycerol (PG) and phosphatidylethanolamine (PE) synthesis rates.
- To understand the role of host membrane lipid composition in bacteriophage assembly.
Main Methods:
- Monitoring of PG and PE biosynthesis rates in infected and uninfected Pseudomonas BAL-31 cultures.
- Analysis of phospholipid turnover during culture lysis.
- Characterization of lipid composition in bacteriophage particles.
Main Results:
- No significant change in PG or PE biosynthesis rates was observed during the latent period of bacteriophage infection.
- Increased PG content was only apparent during lysis, attributed to PE turnover.
- Bacteriophage lipid composition reflected the host membrane at the time of assembly, not preferential lipid selection.
- PE turnover occurred simultaneously with glycerol, phosphorus, and fatty acid moieties at lysis.
Conclusions:
- PM2 infection has minimal impact on Pseudomonas BAL-31 phospholipid metabolism.
- Host cytoplasmic membrane contains sufficient PG for phage production.
- PE turnover is a lytic phenomenon, distinct from phage biosynthesis and maturation.
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