Harris R S, Bull H J, Rosenberg S M
Department of Biochemistry, University of Alberta Faculty of Medicine, Edmonton, Canada.
Mutat Res. 1997 Apr 14;375(1):19-24. doi: 10.1016/s0027-5107(96)00244-8.
The sequences of adaptive reversions of a lac frameshift mutation in Escherichia coli resemble DNA polymerase errors, and the adaptive reversions decrease in strains with an antimutator DNA polymerase III (PolIII) allele. The latter finding could imply that DNA PolIII itself makes adaptive mutations. Alternatively, normal DNA PolIII errors could saturate post-synthesis mismatch repair during adaptive mutation. If so, the antimutator strain would produce fewer adaptive mutations because it possesses greater capacity for mismatch repair which could correct errors made by a polymerase other than DNA PolIII. Mismatch repair capacity is limited specifically during adaptive mutation, necessitating a test of this indirect model. This indirect model is ruled out here by the observation that the antimutator PolIII allele decreases adaptive mutation even in mismatch repair-defective cells. This supports a direct role for DNA PolIII in recombination-dependent adaptive mutation.
大肠杆菌中乳糖移码突变的适应性回复序列类似于DNA聚合酶错误,并且在具有抗突变DNA聚合酶III(PolIII)等位基因的菌株中适应性回复减少。后一个发现可能意味着DNA PolIII本身会产生适应性突变。或者,正常的DNA PolIII错误可能会在适应性突变过程中使合成后错配修复饱和。如果是这样,抗突变菌株产生的适应性突变会更少,因为它具有更大的错配修复能力,能够纠正除DNA PolIII之外的聚合酶所产生的错误。错配修复能力在适应性突变过程中特别有限,因此需要对这个间接模型进行测试。这里通过观察到抗突变PolIII等位基因即使在错配修复缺陷细胞中也会减少适应性突变,排除了这个间接模型。这支持了DNA PolIII在依赖重组的适应性突变中起直接作用。