Shurtleff Brenna W, Ollivierre Jaylene N, Tehrani Mohammad, Walker Graham C, Beuning Penny J
Department of Chemistry and Chemical Biology, Northeastern University, Boston, MA 02115, USA.
J Bacteriol. 2009 Aug;191(15):4815-23. doi: 10.1128/JB.01742-08. Epub 2009 May 29.
Y family DNA polymerases are specialized for replication of damaged DNA and represent a major contribution to cellular resistance to DNA lesions. Although the Y family polymerase active sites have fewer contacts with their DNA substrates than replicative DNA polymerases, Y family polymerases appear to exhibit specificity for certain lesions. Thus, mutation of the steric gate residue of Escherichia coli DinB resulted in the specific loss of lesion bypass activity. We constructed variants of E. coli UmuC with mutations of the steric gate residue Y11 and of residue F10 and determined that strains harboring these variants are hypersensitive to UV light. Moreover, these UmuC variants are dominant negative with respect to sensitivity to UV light. The UV hypersensitivity and the dominant negative phenotype are partially suppressed by additional mutations in the known motifs in UmuC responsible for binding to the beta processivity clamp, suggesting that the UmuC steric gate variant exerts its effects via access to the replication fork. Strains expressing the UmuC Y11A variant also exhibit decreased UV mutagenesis. Strikingly, disruption of the dnaQ gene encoding the replicative DNA polymerase proofreading subunit suppressed the dominant negative phenotype of a UmuC steric gate variant. This could be due to a recruitment function of the proofreading subunit or involvement of the proofreading subunit in a futile cycle of base insertion/excision with the UmuC steric gate variant.
Y家族DNA聚合酶专门负责复制受损DNA,对细胞抵抗DNA损伤起主要作用。尽管与复制性DNA聚合酶相比,Y家族聚合酶的活性位点与DNA底物的接触较少,但Y家族聚合酶似乎对某些损伤具有特异性。因此,大肠杆菌DinB的空间门控残基发生突变会导致损伤旁路活性的特异性丧失。我们构建了大肠杆菌UmuC的变体,其空间门控残基Y11和残基F10发生了突变,并确定携带这些变体的菌株对紫外线高度敏感。此外,这些UmuC变体在对紫外线的敏感性方面具有显性负效应。UmuC中负责与β滑动夹结合的已知基序中的额外突变部分抑制了紫外线超敏反应和显性负表型,这表明UmuC空间门控变体通过进入复制叉发挥其作用。表达UmuC Y11A变体的菌株也表现出紫外线诱变减少。引人注目的是,编码复制性DNA聚合酶校对亚基的dnaQ基因的破坏抑制了UmuC空间门控变体的显性负表型。这可能是由于校对亚基的招募功能,或者是校对亚基参与了与UmuC空间门控变体的碱基插入/切除的无效循环。