首页> 外文期刊>Journal of Virology >Defective lysis of streptomycin-resistant escherichia coli cells infected with bacteriophage f2.
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Defective lysis of streptomycin-resistant escherichia coli cells infected with bacteriophage f2.

机译:用噬菌体F2感染链霉素抗性大肠杆菌细胞的缺陷裂解。

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摘要

A lysis defect was found to account for the failure of a streptomycin-resistant strain of Escherichia coli to form plaques when infected with the male-specific bacteriophage f2. The lysis defect was associated with the mutation to streptomycin resistance. Large amounts of apparently normal bacteriophage accumulated in these cells. Cell-free extracts from both the parental and mutant strains synthesized a potential lysis protein in considerable amounts in response to formaldehyde-treated f2 RNA but not in response to untreated RNA. As predicted from the nucleotide sequence of the analogous MS2 phage, the protein synthesized in vitro had the expected molecular weight and lacked glycine. The cistron for the lysis protein overlapped portions of the coat and replicase cistrons and was translated in the +1 reading frame. Initiation at the lysis protein cistron may be favored by translation errors that expose the normally masked initiation site, and streptomycin-resistant ribosomes, known to have more faithful translation properties, may be unable to efficiently synthesize the lysis protein.
机译:发现裂解缺陷考虑了在感染致孔特异性噬菌体F2的抗菌菌属Coli的链霉素抗性菌株的失效。裂解缺陷与抗链霉素抗性的突变有关。在这些细胞中积累的大量明显正常的噬菌体。来自父母和突变菌株的无细胞提取物在相当大量的情况下合成潜在的裂解蛋白,响应于甲醛处理的F2 RNA,但不响应未处理的RNA。从类似MS2噬菌体的核苷酸序列预测,体外合成的蛋白质具有预期的分子量并缺乏甘氨酸。用于裂解蛋白质的Cistron重叠涂层和复制酶传中心的部分,并在+1读框中翻译。在裂解蛋白质Cistron的引发可以通过暴露常掩蔽的引发位点的翻译误差来赞成,并且已知具有更忠实的翻译性能的链霉素抗性核糖体可能无法有效地合成裂解蛋白。

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