Lancy E D, Lifsics M R, Kehres D G, Maurer R
Department of Molecular Biology and Microbiology, Case Western Reserve University, Cleveland, Ohio 44106.
J Bacteriol. 1989 Oct;171(10):5572-80. doi: 10.1128/jb.171.10.5572-5580.1989.
dnaQ (mutD) encodes the editing exonuclease subunit (epsilon) of DNA polymerase III. Previously described mutations in dnaQ include dominant and recessive mutator alleles as well as leaky temperature-sensitive alleles. We describe the properties of strains bearing null mutations (deletion-substitution alleles) of this gene. Null mutants exhibited a growth defect as well as elevated spontaneous mutation. As a consequence of the poor growth of dnaQ mutants and their high mutation rate, these strains were replaced within single colonies by derivatives carrying an extragenic suppressor mutation that compensated the growth defect but apparently not the mutator effect. Sixteen independently derived suppressors mapped in the vicinity of dnaE, the gene for the polymerization subunit (alpha) of DNA polymerase III, and one suppressor that was sequenced encoded an altered alpha polypeptide. Partially purified DNA polymerase III containing this altered alpha subunit was active in polymerization assays. In addition to their dependence on a suppressor mutation affecting alpha, dnaQ mutants strictly required DNA polymerase I for viability. We argue from these data that in the absence of epsilon, DNA replication falters unless secondary mechanisms, including genetically coded alteration in the intrinsic replication capacity of alpha and increased use of DNA polymerase I, come into play. Thus, epsilon plays a role in DNA replication distinct from its known role in controlling spontaneous mutation frequency.
dnaQ(mutD)基因编码DNA聚合酶III的校正外切核酸酶亚基(ε)。先前描述的dnaQ突变包括显性和隐性诱变等位基因以及渗漏型温度敏感等位基因。我们描述了携带该基因无效突变(缺失-替代等位基因)的菌株的特性。无效突变体表现出生长缺陷以及自发突变率升高。由于dnaQ突变体生长不良及其高突变率,这些菌株在单个菌落中被携带补偿生长缺陷但显然不补偿诱变效应的基因外抑制突变的衍生物所取代。16个独立衍生的抑制子定位于dnaE附近,dnaE是DNA聚合酶III的聚合亚基(α)的基因,并且一个被测序的抑制子编码一种改变的α多肽。含有这种改变的α亚基的部分纯化的DNA聚合酶III在聚合测定中具有活性。除了依赖影响α的抑制突变外,dnaQ突变体严格需要DNA聚合酶I才能存活。我们从这些数据推断,在没有ε的情况下,除非包括α的内在复制能力的遗传编码改变和增加使用DNA聚合酶I在内的二级机制发挥作用,DNA复制就会 falters。因此,ε在DNA复制中发挥的作用与其在控制自发突变频率方面的已知作用不同。