Dumas L B, Miller C A
J Virol. 1976 May;18(2):426-35. doi: 10.1128/JVI.18.2.426-435.1976.
We asked if phiX174 single-stranded DNA synthesis could reinitiate at the nonpermissive temperature in dnaB and dnaC temperature-sensitive host mutants. The rates of single-stranded DNA synthesis were measured after the removal of chlorampheicol that had been added at various times after infection to specifically stop this stage of phiX174 DNA synthesis. Reinitiation was not defective in either mutant host. Our data suggested that the reinitiation of the single-stranded stage of phiX174 DNA synthesis in these experiments was analogous to the normal initiation of this stage of phiX174 DNA synthesis in infections without chloramphenicol. Assuming this to be the case, we conclude that the host cell dnaB and dnaC proteins are not essential for the normal initiation of the single-stranded synthesis stage of phiX174 DNA synthesis. In related experiments we observed that in the dnaC mutant host at the permissive temperature, phiX174 replicative form DNA synthesis continued at its initial rate even during the single-stranded DNA synthesis stage. This indicates that these two stages of phiX174 DNA synthesis are not necessarily mutually exclusive.
我们探究了在dnaB和dnaC温度敏感型宿主突变体中,φX174单链DNA合成在非允许温度下是否能够重新起始。在感染后不同时间添加氯霉素以特异性阻断φX174 DNA合成的这一阶段,之后去除氯霉素,测量单链DNA合成的速率。在这两种突变宿主中重新起始均无缺陷。我们的数据表明,在这些实验中,φX174 DNA合成单链阶段的重新起始类似于在无氯霉素感染情况下该阶段φX174 DNA合成的正常起始。假设情况如此,我们得出结论,宿主细胞的dnaB和dnaC蛋白对于φX174 DNA合成单链合成阶段的正常起始并非必不可少。在相关实验中我们观察到,在允许温度下的dnaC突变宿主中,即使在单链DNA合成阶段,φX174复制型DNA合成仍以其初始速率继续进行。这表明φX174 DNA合成的这两个阶段不一定相互排斥。