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Phospholipid metabolism in Pseudomonas BAL-31 infected with lipid-containing bacteriophage PM2.

机译:Pseudomonas BAL-31中的磷脂代谢感染含有脂质的噬菌体PM2。

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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.
机译:具有含脂质的噬菌体PM2的假单胞菌BAL-31感染导致磷脂酰甘油(PG)或磷脂酰乙醇胺(PE)生物合成率的可检测变化。在培养物开始叙述之前,没有看到受感染培养物的pG含量的增加,并且这种增加实际上只有由PE的易于培养裂解的大量成交量产生的相对增加。周转研究表明,甘油,磷脂酸和乙醇胺部分在裂解时同时转过来,因此在噬菌体的潜在时段期间使PG转化不太可能。在噬菌体中发现的脂质没有反映感染之前或之后合成的脂质的优先选择,但实际上在组装噬菌体时反映了宿主膜的组成。使用改性介质,使培养假单胞菌BAL-31作为原型,导致感染培养物的可靠裂解时间,使PM2感染效应在宿主磷脂代谢的几乎没有变化,并且存在足够的PG宿主细胞质膜占全爆的噬菌体。由于我们所取得的可靠裂解时间,我们得出结论,某些代谢事件,即PE营业额,是裂变现象,并且不能与与生物合成和噬菌体成熟相关的事件混淆。

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