首页> 外文期刊>Nucleic Acids Research >Escherichia coli MutY protein has a guanine-DNA glycosylase that acts on 7,8-dihydro-8-oxoguanine:guanine mispair to prevent spontaneous G:C-->C:G transversions.
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Escherichia coli MutY protein has a guanine-DNA glycosylase that acts on 7,8-dihydro-8-oxoguanine:guanine mispair to prevent spontaneous G:C-->C:G transversions.

机译:大肠杆菌MutY蛋白具有鸟嘌呤-DNA糖基化酶,可作用于7,8-二氢-8-氧鸟嘌呤:鸟嘌呤错配以防止自发G:C-> C:G转化。

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    摘要

    Low rates of spontaneous G:C-->C:G transversions would be achieved not only by the correction of base mismatches during DNA replication but also by the prevention and removal of oxidative base damage in DNA. Escherichia coli must have several pathways to repair such mismatches and DNA modifications. In this study, we attempted to identify mutator loci leading to G:C-->C:G transversions in E.coli. The strain CC103 carrying a specific mutation in lacZ was mutagenized by random miniTn 10 insertion mutagenesis. In this strain, only the G:C-->C:G change can revert the glutamic acid at codon 461, which is essential for sufficient beta-galactosidase activity to allow growth on lactose. Mutator strains were detected as colonies with significantly increased rates of papillae formation on glucose minimal plates containing P-Gal and X-Gal. We screened approximately 40 000 colonies and selected several mutator strains. The strain GC39 showed the highest mutation rate to Lac+. The gene responsible for the mutator phenotypes, mut39 , was mapped at around 67 min on the E.coli chromosome. The sequencing of the miniTn 10 -flanking DNA region revealed that the mut39 was identical to the mutY gene of E.coli. The plasmid carrying the mutY + gene reduced spontaneous G:C-->T:A and G:C-->C:G mutations in both mutY and mut39 strains. Purified MutY protein bound to the oligonucleotides containing 7,8-dihydro-8-oxo-guanine (8-oxoG):G and 8-oxoG:A. Furthermore, we found that the MutY protein had a DNA glycosylase activity which removes unmodified guanine from the 8-oxoG:G mispair. These results demonstrate that the MutY protein prevents the generation of G:C-->C:G transversions by removing guanine from the 8-oxoG:G mispair in E.coli.
    机译:自发的G:C-> C:G转化率低,不仅可以通过纠正DNA复制过程中的碱基错配来实现,而且可以通过防止和消除DNA中的氧化性碱基破坏来实现。大肠杆菌必须具有几种途径来修复这种错配和DNA修饰。在这项研究中,我们试图确定导致大肠杆菌中G:C-> C:G转化的突变位点。通过随机miniTn 10插入诱变诱变在lacZ中携带特定突变的CC103菌株。在该菌株中,只有G:C-> C:G的变化才能使461位密码子的谷氨酸还原,这对于足够的β-半乳糖苷酶活性是必需的,以允许在乳糖上生长。在含有P-Gal和X-Gal的葡萄糖最小平板上,突变菌株被检测为具有显着增加的乳头形成速率的菌落。我们筛选了约40 000个菌落,并选择了几种突变菌株。 GC39菌株显示出最高的Lac +突变率。负责突变体表型的基因mut39定位在大肠杆菌染色体上约67分钟处。 miniTn 10侧翼DNA区域的测序表明,mut39与大肠杆菌的mutY基因相同。携带mutY +基因的质粒可以降低mutY和mut39菌株中的自发G:C-> T:A和G:C-> C:G突变。纯化的MutY蛋白与包含7,8-二氢-8-氧代鸟嘌呤(8-oxoG):G和8-oxoG:A的寡核苷酸结合。此外,我们发现MutY蛋白具有DNA糖基化酶活性,可从8-oxoG:G错误配对中去除未修饰的鸟嘌呤。这些结果表明MutY蛋白通过从大肠杆菌的8-oxoG:G错配中去除鸟嘌呤来阻止G:C-> C:G转化的产生。

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