Derstine P L, Dumas L B, Miller C A
J Virol. 1976 Sep;19(3):915-24. doi: 10.1128/JVI.19.3.915-924.1976.
The synthesis of bacteriophage G4 DNA was examined in temperature-sensitive dna mutants under permissive and nonpermissive conditions. The infecting single-stranded G4 DNA was converted to the parental replicative form (RF) at the nonpermissive temperature in infected cells containing a temperature sensitive mutation in the dnaA, dnaB, dnaC, dnaE, or dnaG gene. The presence of 30 mug of chloramphenicol or 200 mug of rifampin per ml had no effect on parental RF synthesis in these mutants. Replication of G4 double-stranded RF DNA occurred at a normal rate in dnaAts cells at the nonpermissive temperature, but the rate was greatly reduced in cells containing a temperature-sensitive mutation in the dnaB, dnaC, dnaE, or dnaG gene. RF DNA replicated at normal rates in revertants of these dna temperature-sensitive host cells. The simplest interpretation of these observations is that none of the dna gene products tested is essential for the synthesis of the complementary DNA strand on the infecting single-stranded G4 DNA, whereas the dnaB, dnaC, dnaE, (DNA polymerase III), and dnaG gene products are all essential for replication of the double-stranded G4 RF DNA. The alternate possibility that one or more of the gene products are actually essential for G4 parental RF synthesis, even though this synthesis is not defective in the mutant hosts, is also discussed.
在允许和非允许条件下,对温度敏感型dna突变体中噬菌体G4 DNA的合成进行了检测。在dnaA、dnaB、dnaC、dnaE或dnaG基因发生温度敏感突变的感染细胞中,感染的单链G4 DNA在非允许温度下转化为亲本复制型(RF)。每毫升含有30微克氯霉素或200微克利福平对这些突变体中亲本RF的合成没有影响。在非允许温度下,G4双链RF DNA在dnaAts细胞中以正常速率复制,但在dnaB、dnaC、dnaE或dnaG基因发生温度敏感突变的细胞中,复制速率大大降低。RF DNA在这些dna温度敏感宿主细胞的回复突变体中以正常速率复制。对这些观察结果最简单的解释是,所检测的dna基因产物中没有一个对于感染的单链G4 DNA上互补DNA链的合成是必需的,而dnaB、dnaC、dnaE(DNA聚合酶III)和dnaG基因产物对于双链G4 RF DNA的复制都是必需的。还讨论了另一种可能性,即即使在突变宿主中这种合成没有缺陷,但一种或多种基因产物实际上对于G4亲本RF的合成是必需的。