Hours C, Denhardt D T
Mol Gen Genet. 1979 Apr 17;172(1):73-80. doi: 10.1007/BF00276217.
Using phiX1974 replicative form (RF) DNA as an in vivo probe, we have investigated the coordinated action of the 5' leads to 3' exonuclease and polymerase activities of DNA polymerase I in order to understand better its physiological role. We constructed double mutants containing the rep mutation (the replication of phiX174 RF does not occur in rep mutants) together with a mutation affecting DNA polymerase I, either polA12 or polA546ex. Using these mutants, which are believed to be thermosensitive in the polymerase function or the 5' leads to 3' exonuclease function respectively, we studied the kinetics of nick translation at the permissive and non-permissive temperatures in vivo. The substrate was the phiX174 replicative form DNA nicked by the phiX174 gene A protein. E. coli rep polA546ex gave the lowest rate of nick translation, although the ability to perform nick translation, at least as measured by our assay, was still present. E. coli rep polA12 showed a similar low rate at the non-permissive temperature but a rate close to the wild-type level at the permissive temperature. Formation of the parental replicative form molecule in either strain was affected little, even at the restrictive temperature. Our results suggest that DNA polymerase I may not play a major role in ongoing DNA replication.
利用φX174复制型(RF)DNA作为体内探针,我们研究了DNA聚合酶I的5'→3'核酸外切酶和聚合酶活性的协同作用,以便更好地理解其生理作用。我们构建了含有rep突变(在rep突变体中φX174 RF的复制不发生)以及影响DNA聚合酶I的突变(polA12或polA546ex)的双突变体。利用这些分别被认为在聚合酶功能或5'→3'核酸外切酶功能上对温度敏感的突变体,我们研究了体内在允许温度和非允许温度下切口平移的动力学。底物是被φX174基因A蛋白切口的φX174复制型DNA。大肠杆菌rep polA546ex的切口平移速率最低,不过至少按照我们的检测方法,其进行切口平移的能力仍然存在。大肠杆菌rep polA12在非允许温度下显示出类似的低速率,但在允许温度下速率接近野生型水平。即使在限制温度下,两种菌株中亲本复制型分子的形成也几乎没有受到影响。我们的结果表明,DNA聚合酶I可能在正在进行的DNA复制中不发挥主要作用。