Noguchi Miho, Urushibara Ayumi, Yokoya Akinari, O'Neill Peter, Shikazono Naoya
Advanced Research Science Center, Japan Atomic Energy Agency, 2-4 Shirakata-Shirane, Tokai-mura, Ibaraki 319-1195, Japan.
Mutat Res. 2012 Apr 1;732(1-2):34-42. doi: 10.1016/j.mrfmmm.2011.12.009. Epub 2012 Jan 13.
The biological consequences of clusters containing a single strand break and base lesion(s) remain largely unknown. In the present study we determined the mutagenicities of two- and three-lesion clustered damage sites containing a 1-nucleotide gap (GAP) and 8-oxo-7,8-dihydroguanine(s) (8-oxoG(s)) in Escherichia coli. The mutation frequencies (MFs) of bi-stranded two-lesion clusters (GAP/8-oxoG), especially in mutY-deficient strains, were high and were similar to those for bi-stranded clusters with 8-oxoG and base lesions/AP sites, suggesting that the GAP is processed with an efficiency similar to the efficiency of processing a base lesion or an AP site within a cluster. The MFs of tandem two-lesion clusters comprised of a GAP and an 8-oxoG on the same strand were comparable to or less than the MF of a single 8-oxoG. The mutagenic potential of three-lesion clusters, which were comprised of a tandem lesion (a GAP and an 8-oxoG) and an opposing single 8-oxoG, was higher than that of a single 8-oxoG, but was no more than that of a bi-stranded 8-oxoGs. We suggest that incorporation of a nucleotide opposite 8-oxoG is less mutagenic when a GAP is present in a cluster than when a GAP is absent. Our observations indicate that the repair of a GAP is retarded by an opposing 8-oxoG, but not by a tandem 8-oxoG, and that the extent of GAP repair determines the biological consequences.
含有单链断裂和碱基损伤的簇的生物学后果在很大程度上仍然未知。在本研究中,我们测定了在大肠杆菌中含有1个核苷酸间隙(GAP)和8-氧代-7,8-二氢鸟嘌呤(8-oxoG)的双损伤和三损伤簇状损伤位点的诱变性。双链双损伤簇(GAP/8-oxoG)的突变频率(MFs),尤其是在mutY缺陷菌株中,很高,并且与含有8-oxoG和碱基损伤/脱嘌呤嘧啶位点的双链簇的突变频率相似,这表明GAP的处理效率与簇内碱基损伤或脱嘌呤嘧啶位点的处理效率相似。同一链上由一个GAP和一个8-oxoG组成的串联双损伤簇的MFs与单个8-oxoG的MFs相当或更低。由串联损伤(一个GAP和一个8-oxoG)和一个相对的单个8-oxoG组成的三损伤簇的诱变潜力高于单个8-oxoG,但不超过双链8-oxoG的诱变潜力。我们认为,当簇中存在GAP时,与不存在GAP时相比,8-oxoG对面掺入核苷酸的诱变性更低。我们的观察结果表明,相对的8-oxoG会阻碍GAP的修复,但串联的8-oxoG不会,并且GAP修复的程度决定了生物学后果。